A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
C. Daussy, M. Guinet, A. Amy-Klein, K. Djerroud, Y. Hermier, S. Briaudeau, C. J. Bordé, and C. Chardonnet, “Direct determination of the boltzmann constant by an optical method,” Phys. Rev. Lett. 98, 250801 (2007).
[Crossref]
[PubMed]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
C. J. Borde, “On the theory of linear absorption line shapes in gases,” C. R. Physique 10, 866–882 (2009).
[Crossref]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
C. Daussy, M. Guinet, A. Amy-Klein, K. Djerroud, Y. Hermier, S. Briaudeau, C. J. Bordé, and C. Chardonnet, “Direct determination of the boltzmann constant by an optical method,” Phys. Rev. Lett. 98, 250801 (2007).
[Crossref]
[PubMed]
C. Lemarchand, M. Triki, B. Darquié, Ch. J. Bordé, C. Chardonnet, and C. Daussy, “Progress towards an accurate determination of the Boltzmann constant by Doppler spectroscopy,” New J. Phys.13, 073028 (2011).
[Crossref]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
C. Daussy, M. Guinet, A. Amy-Klein, K. Djerroud, Y. Hermier, S. Briaudeau, C. J. Bordé, and C. Chardonnet, “Direct determination of the boltzmann constant by an optical method,” Phys. Rev. Lett. 98, 250801 (2007).
[Crossref]
[PubMed]
A. Castrillo, G. Casa, A. Merlone, G. Galzerano, P. Laporta, and L. Gianfrani, “On the determination of the Boltzmann constant by means of precision molecular spectroscopy in the near-infrared,” C. R. Physique 10, 894–906 (2009).
[Crossref]
G. Casa, A. Castrillo, G. Galzerano, R. Wehr, A. Merlone, D. Di Serafino, P. Laporta, and L. Gianfrani, “Primary gas thermometry by means of laser-absorption spectroscopy: Determination of the boltzmann constant,” Phys. Rev. Lett. 100, 200801 (2008).
[Crossref]
[PubMed]
M. D. De Vizia, F. Rohart, ccedil ois, A. Castrillo, E. Fasci, L. Moretti, and L. Gianfrani, “Speed-dependent effects in the near-infrared spectrum of self-colliding h2o18 molecules,” Phys. Rev. A 83, 052506 (2011).
[Crossref]
A. Castrillo, G. Casa, A. Merlone, G. Galzerano, P. Laporta, and L. Gianfrani, “On the determination of the Boltzmann constant by means of precision molecular spectroscopy in the near-infrared,” C. R. Physique 10, 894–906 (2009).
[Crossref]
G. Casa, A. Castrillo, G. Galzerano, R. Wehr, A. Merlone, D. Di Serafino, P. Laporta, and L. Gianfrani, “Primary gas thermometry by means of laser-absorption spectroscopy: Determination of the boltzmann constant,” Phys. Rev. Lett. 100, 200801 (2008).
[Crossref]
[PubMed]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
C. Daussy, M. Guinet, A. Amy-Klein, K. Djerroud, Y. Hermier, S. Briaudeau, C. J. Bordé, and C. Chardonnet, “Direct determination of the boltzmann constant by an optical method,” Phys. Rev. Lett. 98, 250801 (2007).
[Crossref]
[PubMed]
C. Lemarchand, M. Triki, B. Darquié, Ch. J. Bordé, C. Chardonnet, and C. Daussy, “Progress towards an accurate determination of the Boltzmann constant by Doppler spectroscopy,” New J. Phys.13, 073028 (2011).
[Crossref]
B. Gao, W. Jiang, A.-W. Liu, Y. Lu, C.-F. Cheng, G.-S. Cheng, and S.-M. Hu, “Ultra sensitive near-infrared cavity ring down spectrometer for precise line profile measurement,” Rev. Sci. Instrum. 81, 043105 (2010).
[Crossref]
[PubMed]
B. Gao, W. Jiang, A.-W. Liu, Y. Lu, C.-F. Cheng, G.-S. Cheng, and S.-M. Hu, “Ultra sensitive near-infrared cavity ring down spectrometer for precise line profile measurement,” Rev. Sci. Instrum. 81, 043105 (2010).
[Crossref]
[PubMed]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
A. Cygan, D. Lisak, R. S. Trawiński, and R. Ciuryło, “Influence of the line-shape model on the spectroscopic determination of the boltzmann constant,” Phys. Rev. A 82, 032515 (2010).
[Crossref]
J. T. Hodges and R. Ciurylo, “Automated high-resolution frequency-stabilized cavity ring-down absorption spectrometer,” Rev. Sci. Instrum. 76, 023112 (2005).
[Crossref]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
A. Cygan, D. Lisak, R. S. Trawiński, and R. Ciuryło, “Influence of the line-shape model on the spectroscopic determination of the boltzmann constant,” Phys. Rev. A 82, 032515 (2010).
[Crossref]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
C. Lemarchand, M. Triki, B. Darquié, Ch. J. Bordé, C. Chardonnet, and C. Daussy, “Progress towards an accurate determination of the Boltzmann constant by Doppler spectroscopy,” New J. Phys.13, 073028 (2011).
[Crossref]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
C. Daussy, M. Guinet, A. Amy-Klein, K. Djerroud, Y. Hermier, S. Briaudeau, C. J. Bordé, and C. Chardonnet, “Direct determination of the boltzmann constant by an optical method,” Phys. Rev. Lett. 98, 250801 (2007).
[Crossref]
[PubMed]
C. Lemarchand, M. Triki, B. Darquié, Ch. J. Bordé, C. Chardonnet, and C. Daussy, “Progress towards an accurate determination of the Boltzmann constant by Doppler spectroscopy,” New J. Phys.13, 073028 (2011).
[Crossref]
M. D. De Vizia, F. Rohart, ccedil ois, A. Castrillo, E. Fasci, L. Moretti, and L. Gianfrani, “Speed-dependent effects in the near-infrared spectrum of self-colliding h2o18 molecules,” Phys. Rev. A 83, 052506 (2011).
[Crossref]
A. O’Keefe and D. Deacon, “Cavity ring-down optical spectrometer for absorption measurements using pulsed laser sources,” Rev. Sci. Instrum. 59, 2544–51 (1988).
[Crossref]
G. Casa, A. Castrillo, G. Galzerano, R. Wehr, A. Merlone, D. Di Serafino, P. Laporta, and L. Gianfrani, “Primary gas thermometry by means of laser-absorption spectroscopy: Determination of the boltzmann constant,” Phys. Rev. Lett. 100, 200801 (2008).
[Crossref]
[PubMed]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
C. Daussy, M. Guinet, A. Amy-Klein, K. Djerroud, Y. Hermier, S. Briaudeau, C. J. Bordé, and C. Chardonnet, “Direct determination of the boltzmann constant by an optical method,” Phys. Rev. Lett. 98, 250801 (2007).
[Crossref]
[PubMed]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
R. Wehr, J. R. Drummond, and A. D. May, “Design of a difference-frequency infrared laser spectrometer for absorption line-shape studies,” Applied Optics 46, 978–985 (2007).
[Crossref]
[PubMed]
M. D. De Vizia, F. Rohart, ccedil ois, A. Castrillo, E. Fasci, L. Moretti, and L. Gianfrani, “Speed-dependent effects in the near-infrared spectrum of self-colliding h2o18 molecules,” Phys. Rev. A 83, 052506 (2011).
[Crossref]
J. T. Zhang, H. Lin, J. P. Sun, X. J. Feng, K. A. Gillis, and M. R. Moldover, “Cylindrical acoustic resonator for the re-determination of the boltzmann constant,” Int. J. Thermophys. 31, 1273–1293 (2010).
[Crossref]
A. Castrillo, G. Casa, A. Merlone, G. Galzerano, P. Laporta, and L. Gianfrani, “On the determination of the Boltzmann constant by means of precision molecular spectroscopy in the near-infrared,” C. R. Physique 10, 894–906 (2009).
[Crossref]
G. Casa, A. Castrillo, G. Galzerano, R. Wehr, A. Merlone, D. Di Serafino, P. Laporta, and L. Gianfrani, “Primary gas thermometry by means of laser-absorption spectroscopy: Determination of the boltzmann constant,” Phys. Rev. Lett. 100, 200801 (2008).
[Crossref]
[PubMed]
B. Gao, W. Jiang, A.-W. Liu, Y. Lu, C.-F. Cheng, G.-S. Cheng, and S.-M. Hu, “Ultra sensitive near-infrared cavity ring down spectrometer for precise line profile measurement,” Rev. Sci. Instrum. 81, 043105 (2010).
[Crossref]
[PubMed]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
M. D. De Vizia, F. Rohart, ccedil ois, A. Castrillo, E. Fasci, L. Moretti, and L. Gianfrani, “Speed-dependent effects in the near-infrared spectrum of self-colliding h2o18 molecules,” Phys. Rev. A 83, 052506 (2011).
[Crossref]
A. Castrillo, G. Casa, A. Merlone, G. Galzerano, P. Laporta, and L. Gianfrani, “On the determination of the Boltzmann constant by means of precision molecular spectroscopy in the near-infrared,” C. R. Physique 10, 894–906 (2009).
[Crossref]
G. Casa, A. Castrillo, G. Galzerano, R. Wehr, A. Merlone, D. Di Serafino, P. Laporta, and L. Gianfrani, “Primary gas thermometry by means of laser-absorption spectroscopy: Determination of the boltzmann constant,” Phys. Rev. Lett. 100, 200801 (2008).
[Crossref]
[PubMed]
J. T. Zhang, H. Lin, J. P. Sun, X. J. Feng, K. A. Gillis, and M. R. Moldover, “Cylindrical acoustic resonator for the re-determination of the boltzmann constant,” Int. J. Thermophys. 31, 1273–1293 (2010).
[Crossref]
C. Daussy, M. Guinet, A. Amy-Klein, K. Djerroud, Y. Hermier, S. Briaudeau, C. J. Bordé, and C. Chardonnet, “Direct determination of the boltzmann constant by an optical method,” Phys. Rev. Lett. 98, 250801 (2007).
[Crossref]
[PubMed]
X. Zhan and L. Halonen, “High-resolution photoacoustic study of the ν1 + 3ν3 band system of acetylene with a titanium:sapphire ring laser,” J. Mol. Spectorsc. 160, 464 (1993).
[Crossref]
T. Udem, R. Holzwarth, and T. W. Hansch, “Optical frequency metrology,” Nature 416, 233–237 (2002).
[Crossref]
[PubMed]
D. A. Long, D. K. Havey, M. Okumura, C. E. Miller, and J. T. Hodges, “Cavity ring-down spectroscopy measurements of sub-doppler hyperfine structure,” Phys. Rev. A 81, 064502 (2010).
[Crossref]
C. Daussy, M. Guinet, A. Amy-Klein, K. Djerroud, Y. Hermier, S. Briaudeau, C. J. Bordé, and C. Chardonnet, “Direct determination of the boltzmann constant by an optical method,” Phys. Rev. Lett. 98, 250801 (2007).
[Crossref]
[PubMed]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
D. A. Long, D. K. Havey, M. Okumura, C. E. Miller, and J. T. Hodges, “Cavity ring-down spectroscopy measurements of sub-doppler hyperfine structure,” Phys. Rev. A 81, 064502 (2010).
[Crossref]
J. T. Hodges and R. Ciurylo, “Automated high-resolution frequency-stabilized cavity ring-down absorption spectrometer,” Rev. Sci. Instrum. 76, 023112 (2005).
[Crossref]
J. T. Hodges, H. P. Layer, W. W. Miller, and G. E. Scace, “Frequency-stabilized single-mode cavity ring-down apparatus for high-resolution absorption spectroscopy,” Rev. Sci. Instrum. 75, 849–863 (2004).
[Crossref]
T. Udem, R. Holzwarth, and T. W. Hansch, “Optical frequency metrology,” Nature 416, 233–237 (2002).
[Crossref]
[PubMed]
K. M. T. Yamada, A. Onae, F. L. Hong, H. Inaba, H. Matsumoto, Y. Nakajima, F. Ito, and T. Shimizu, “High precision line profile measurements on C-13 acetylene using a near infrared frequency comb spectrometer,” J. Mol. Spectorsc. 249, 95–99 (2008).
[Crossref]
K. M. T. Yamada, A. Onae, F.-L. Hong, H. Inaba, and T. Shimizu, “Precise determination of the Doppler width of a rovibrational absorption line using a comb-locked diode laser,” C. R. Physique 10, 907–915 (2009).
[Crossref]
B. Gao, W. Jiang, A.-W. Liu, Y. Lu, C.-F. Cheng, G.-S. Cheng, and S.-M. Hu, “Ultra sensitive near-infrared cavity ring down spectrometer for precise line profile measurement,” Rev. Sci. Instrum. 81, 043105 (2010).
[Crossref]
[PubMed]
K. M. T. Yamada, A. Onae, F.-L. Hong, H. Inaba, and T. Shimizu, “Precise determination of the Doppler width of a rovibrational absorption line using a comb-locked diode laser,” C. R. Physique 10, 907–915 (2009).
[Crossref]
K. M. T. Yamada, A. Onae, F. L. Hong, H. Inaba, H. Matsumoto, Y. Nakajima, F. Ito, and T. Shimizu, “High precision line profile measurements on C-13 acetylene using a near infrared frequency comb spectrometer,” J. Mol. Spectorsc. 249, 95–99 (2008).
[Crossref]
K. M. T. Yamada, A. Onae, F. L. Hong, H. Inaba, H. Matsumoto, Y. Nakajima, F. Ito, and T. Shimizu, “High precision line profile measurements on C-13 acetylene using a near infrared frequency comb spectrometer,” J. Mol. Spectorsc. 249, 95–99 (2008).
[Crossref]
B. Gao, W. Jiang, A.-W. Liu, Y. Lu, C.-F. Cheng, G.-S. Cheng, and S.-M. Hu, “Ultra sensitive near-infrared cavity ring down spectrometer for precise line profile measurement,” Rev. Sci. Instrum. 81, 043105 (2010).
[Crossref]
[PubMed]
B. A. Paldus and A. A. Kachanov, “An historical overview of cavity-enhanced methods,” Can. J. Phys. 83, 975–999 (2005).
[Crossref]
A. Castrillo, G. Casa, A. Merlone, G. Galzerano, P. Laporta, and L. Gianfrani, “On the determination of the Boltzmann constant by means of precision molecular spectroscopy in the near-infrared,” C. R. Physique 10, 894–906 (2009).
[Crossref]
G. Casa, A. Castrillo, G. Galzerano, R. Wehr, A. Merlone, D. Di Serafino, P. Laporta, and L. Gianfrani, “Primary gas thermometry by means of laser-absorption spectroscopy: Determination of the boltzmann constant,” Phys. Rev. Lett. 100, 200801 (2008).
[Crossref]
[PubMed]
J. T. Hodges, H. P. Layer, W. W. Miller, and G. E. Scace, “Frequency-stabilized single-mode cavity ring-down apparatus for high-resolution absorption spectroscopy,” Rev. Sci. Instrum. 75, 849–863 (2004).
[Crossref]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
C. Lemarchand, M. Triki, B. Darquié, Ch. J. Bordé, C. Chardonnet, and C. Daussy, “Progress towards an accurate determination of the Boltzmann constant by Doppler spectroscopy,” New J. Phys.13, 073028 (2011).
[Crossref]
J. T. Zhang, H. Lin, J. P. Sun, X. J. Feng, K. A. Gillis, and M. R. Moldover, “Cylindrical acoustic resonator for the re-determination of the boltzmann constant,” Int. J. Thermophys. 31, 1273–1293 (2010).
[Crossref]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
A. Cygan, D. Lisak, R. S. Trawiński, and R. Ciuryło, “Influence of the line-shape model on the spectroscopic determination of the boltzmann constant,” Phys. Rev. A 82, 032515 (2010).
[Crossref]
B. Gao, W. Jiang, A.-W. Liu, Y. Lu, C.-F. Cheng, G.-S. Cheng, and S.-M. Hu, “Ultra sensitive near-infrared cavity ring down spectrometer for precise line profile measurement,” Rev. Sci. Instrum. 81, 043105 (2010).
[Crossref]
[PubMed]
D. A. Long, D. K. Havey, M. Okumura, C. E. Miller, and J. T. Hodges, “Cavity ring-down spectroscopy measurements of sub-doppler hyperfine structure,” Phys. Rev. A 81, 064502 (2010).
[Crossref]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
B. Gao, W. Jiang, A.-W. Liu, Y. Lu, C.-F. Cheng, G.-S. Cheng, and S.-M. Hu, “Ultra sensitive near-infrared cavity ring down spectrometer for precise line profile measurement,” Rev. Sci. Instrum. 81, 043105 (2010).
[Crossref]
[PubMed]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
K. M. T. Yamada, A. Onae, F. L. Hong, H. Inaba, H. Matsumoto, Y. Nakajima, F. Ito, and T. Shimizu, “High precision line profile measurements on C-13 acetylene using a near infrared frequency comb spectrometer,” J. Mol. Spectorsc. 249, 95–99 (2008).
[Crossref]
R. Wehr, J. R. Drummond, and A. D. May, “Design of a difference-frequency infrared laser spectrometer for absorption line-shape studies,” Applied Optics 46, 978–985 (2007).
[Crossref]
[PubMed]
A. Castrillo, G. Casa, A. Merlone, G. Galzerano, P. Laporta, and L. Gianfrani, “On the determination of the Boltzmann constant by means of precision molecular spectroscopy in the near-infrared,” C. R. Physique 10, 894–906 (2009).
[Crossref]
G. Casa, A. Castrillo, G. Galzerano, R. Wehr, A. Merlone, D. Di Serafino, P. Laporta, and L. Gianfrani, “Primary gas thermometry by means of laser-absorption spectroscopy: Determination of the boltzmann constant,” Phys. Rev. Lett. 100, 200801 (2008).
[Crossref]
[PubMed]
D. A. Long, D. K. Havey, M. Okumura, C. E. Miller, and J. T. Hodges, “Cavity ring-down spectroscopy measurements of sub-doppler hyperfine structure,” Phys. Rev. A 81, 064502 (2010).
[Crossref]
J. T. Hodges, H. P. Layer, W. W. Miller, and G. E. Scace, “Frequency-stabilized single-mode cavity ring-down apparatus for high-resolution absorption spectroscopy,” Rev. Sci. Instrum. 75, 849–863 (2004).
[Crossref]
I. M. Mills, P. J. Mohr, T. J. Quinn, B. N. Taylor, and E. R. Williams, “Redefinition of the kilogram, ampere, kelvin and mole: a proposed approach to implementing cipm recommendation 1 (ci-2005),” Metrologia 43, 227–246 (2006).
[Crossref]
P. J. Mohr, B. N. Taylor, and D. B. Neweo, “CODATA recommended values of the fundamental physical constants: 2006,” J. Phys. Chem. Ref. Data 37, 1187–1284 (2008).
[Crossref]
I. M. Mills, P. J. Mohr, T. J. Quinn, B. N. Taylor, and E. R. Williams, “Redefinition of the kilogram, ampere, kelvin and mole: a proposed approach to implementing cipm recommendation 1 (ci-2005),” Metrologia 43, 227–246 (2006).
[Crossref]
J. T. Zhang, H. Lin, J. P. Sun, X. J. Feng, K. A. Gillis, and M. R. Moldover, “Cylindrical acoustic resonator for the re-determination of the boltzmann constant,” Int. J. Thermophys. 31, 1273–1293 (2010).
[Crossref]
M. D. De Vizia, F. Rohart, ccedil ois, A. Castrillo, E. Fasci, L. Moretti, and L. Gianfrani, “Speed-dependent effects in the near-infrared spectrum of self-colliding h2o18 molecules,” Phys. Rev. A 83, 052506 (2011).
[Crossref]
K. M. T. Yamada, A. Onae, F. L. Hong, H. Inaba, H. Matsumoto, Y. Nakajima, F. Ito, and T. Shimizu, “High precision line profile measurements on C-13 acetylene using a near infrared frequency comb spectrometer,” J. Mol. Spectorsc. 249, 95–99 (2008).
[Crossref]
P. J. Mohr, B. N. Taylor, and D. B. Neweo, “CODATA recommended values of the fundamental physical constants: 2006,” J. Phys. Chem. Ref. Data 37, 1187–1284 (2008).
[Crossref]
A. O’Keefe and D. Deacon, “Cavity ring-down optical spectrometer for absorption measurements using pulsed laser sources,” Rev. Sci. Instrum. 59, 2544–51 (1988).
[Crossref]
M. D. De Vizia, F. Rohart, ccedil ois, A. Castrillo, E. Fasci, L. Moretti, and L. Gianfrani, “Speed-dependent effects in the near-infrared spectrum of self-colliding h2o18 molecules,” Phys. Rev. A 83, 052506 (2011).
[Crossref]
D. A. Long, D. K. Havey, M. Okumura, C. E. Miller, and J. T. Hodges, “Cavity ring-down spectroscopy measurements of sub-doppler hyperfine structure,” Phys. Rev. A 81, 064502 (2010).
[Crossref]
K. M. T. Yamada, A. Onae, F.-L. Hong, H. Inaba, and T. Shimizu, “Precise determination of the Doppler width of a rovibrational absorption line using a comb-locked diode laser,” C. R. Physique 10, 907–915 (2009).
[Crossref]
K. M. T. Yamada, A. Onae, F. L. Hong, H. Inaba, H. Matsumoto, Y. Nakajima, F. Ito, and T. Shimizu, “High precision line profile measurements on C-13 acetylene using a near infrared frequency comb spectrometer,” J. Mol. Spectorsc. 249, 95–99 (2008).
[Crossref]
B. A. Paldus and A. A. Kachanov, “An historical overview of cavity-enhanced methods,” Can. J. Phys. 83, 975–999 (2005).
[Crossref]
I. M. Mills, P. J. Mohr, T. J. Quinn, B. N. Taylor, and E. R. Williams, “Redefinition of the kilogram, ampere, kelvin and mole: a proposed approach to implementing cipm recommendation 1 (ci-2005),” Metrologia 43, 227–246 (2006).
[Crossref]
M. D. De Vizia, F. Rohart, ccedil ois, A. Castrillo, E. Fasci, L. Moretti, and L. Gianfrani, “Speed-dependent effects in the near-infrared spectrum of self-colliding h2o18 molecules,” Phys. Rev. A 83, 052506 (2011).
[Crossref]
J. T. Hodges, H. P. Layer, W. W. Miller, and G. E. Scace, “Frequency-stabilized single-mode cavity ring-down apparatus for high-resolution absorption spectroscopy,” Rev. Sci. Instrum. 75, 849–863 (2004).
[Crossref]
K. M. T. Yamada, A. Onae, F.-L. Hong, H. Inaba, and T. Shimizu, “Precise determination of the Doppler width of a rovibrational absorption line using a comb-locked diode laser,” C. R. Physique 10, 907–915 (2009).
[Crossref]
K. M. T. Yamada, A. Onae, F. L. Hong, H. Inaba, H. Matsumoto, Y. Nakajima, F. Ito, and T. Shimizu, “High precision line profile measurements on C-13 acetylene using a near infrared frequency comb spectrometer,” J. Mol. Spectorsc. 249, 95–99 (2008).
[Crossref]
J. T. Zhang, H. Lin, J. P. Sun, X. J. Feng, K. A. Gillis, and M. R. Moldover, “Cylindrical acoustic resonator for the re-determination of the boltzmann constant,” Int. J. Thermophys. 31, 1273–1293 (2010).
[Crossref]
P. J. Mohr, B. N. Taylor, and D. B. Neweo, “CODATA recommended values of the fundamental physical constants: 2006,” J. Phys. Chem. Ref. Data 37, 1187–1284 (2008).
[Crossref]
I. M. Mills, P. J. Mohr, T. J. Quinn, B. N. Taylor, and E. R. Williams, “Redefinition of the kilogram, ampere, kelvin and mole: a proposed approach to implementing cipm recommendation 1 (ci-2005),” Metrologia 43, 227–246 (2006).
[Crossref]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
A. Cygan, D. Lisak, R. S. Trawiński, and R. Ciuryło, “Influence of the line-shape model on the spectroscopic determination of the boltzmann constant,” Phys. Rev. A 82, 032515 (2010).
[Crossref]
C. Lemarchand, M. Triki, B. Darquié, Ch. J. Bordé, C. Chardonnet, and C. Daussy, “Progress towards an accurate determination of the Boltzmann constant by Doppler spectroscopy,” New J. Phys.13, 073028 (2011).
[Crossref]
T. Udem, R. Holzwarth, and T. W. Hansch, “Optical frequency metrology,” Nature 416, 233–237 (2002).
[Crossref]
[PubMed]
G. Casa, A. Castrillo, G. Galzerano, R. Wehr, A. Merlone, D. Di Serafino, P. Laporta, and L. Gianfrani, “Primary gas thermometry by means of laser-absorption spectroscopy: Determination of the boltzmann constant,” Phys. Rev. Lett. 100, 200801 (2008).
[Crossref]
[PubMed]
R. Wehr, J. R. Drummond, and A. D. May, “Design of a difference-frequency infrared laser spectrometer for absorption line-shape studies,” Applied Optics 46, 978–985 (2007).
[Crossref]
[PubMed]
I. M. Mills, P. J. Mohr, T. J. Quinn, B. N. Taylor, and E. R. Williams, “Redefinition of the kilogram, ampere, kelvin and mole: a proposed approach to implementing cipm recommendation 1 (ci-2005),” Metrologia 43, 227–246 (2006).
[Crossref]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
K. M. T. Yamada, A. Onae, F.-L. Hong, H. Inaba, and T. Shimizu, “Precise determination of the Doppler width of a rovibrational absorption line using a comb-locked diode laser,” C. R. Physique 10, 907–915 (2009).
[Crossref]
K. M. T. Yamada, A. Onae, F. L. Hong, H. Inaba, H. Matsumoto, Y. Nakajima, F. Ito, and T. Shimizu, “High precision line profile measurements on C-13 acetylene using a near infrared frequency comb spectrometer,” J. Mol. Spectorsc. 249, 95–99 (2008).
[Crossref]
P. Zalicki and R. N. Zare, “Cavity ring-down spectroscopy for quantitative absorption measurements,” J. Chem. Phys. 102, 2708–2717 (1995).
[Crossref]
P. Zalicki and R. N. Zare, “Cavity ring-down spectroscopy for quantitative absorption measurements,” J. Chem. Phys. 102, 2708–2717 (1995).
[Crossref]
X. Zhan and L. Halonen, “High-resolution photoacoustic study of the ν1 + 3ν3 band system of acetylene with a titanium:sapphire ring laser,” J. Mol. Spectorsc. 160, 464 (1993).
[Crossref]
J. T. Zhang, H. Lin, J. P. Sun, X. J. Feng, K. A. Gillis, and M. R. Moldover, “Cylindrical acoustic resonator for the re-determination of the boltzmann constant,” Int. J. Thermophys. 31, 1273–1293 (2010).
[Crossref]
R. Wehr, J. R. Drummond, and A. D. May, “Design of a difference-frequency infrared laser spectrometer for absorption line-shape studies,” Applied Optics 46, 978–985 (2007).
[Crossref]
[PubMed]
C. J. Borde, “On the theory of linear absorption line shapes in gases,” C. R. Physique 10, 866–882 (2009).
[Crossref]
K. Djerroud, C. Lemarchand, A. Gauguet, C. Daussy, S. Briaudeau, B. Darquie, O. Lopez, A. Amy-Klein, C. Chardonnet, and C. J. Borde, “Measurement of the Boltzmann constant by the Doppler broadening technique at a 3.8 × 10−5 accuracy level,” C. R. Physique 10, 883–893 (2009).
[Crossref]
A. Castrillo, G. Casa, A. Merlone, G. Galzerano, P. Laporta, and L. Gianfrani, “On the determination of the Boltzmann constant by means of precision molecular spectroscopy in the near-infrared,” C. R. Physique 10, 894–906 (2009).
[Crossref]
K. M. T. Yamada, A. Onae, F.-L. Hong, H. Inaba, and T. Shimizu, “Precise determination of the Doppler width of a rovibrational absorption line using a comb-locked diode laser,” C. R. Physique 10, 907–915 (2009).
[Crossref]
B. A. Paldus and A. A. Kachanov, “An historical overview of cavity-enhanced methods,” Can. J. Phys. 83, 975–999 (2005).
[Crossref]
J. T. Zhang, H. Lin, J. P. Sun, X. J. Feng, K. A. Gillis, and M. R. Moldover, “Cylindrical acoustic resonator for the re-determination of the boltzmann constant,” Int. J. Thermophys. 31, 1273–1293 (2010).
[Crossref]
P. Zalicki and R. N. Zare, “Cavity ring-down spectroscopy for quantitative absorption measurements,” J. Chem. Phys. 102, 2708–2717 (1995).
[Crossref]
X. Zhan and L. Halonen, “High-resolution photoacoustic study of the ν1 + 3ν3 band system of acetylene with a titanium:sapphire ring laser,” J. Mol. Spectorsc. 160, 464 (1993).
[Crossref]
K. M. T. Yamada, A. Onae, F. L. Hong, H. Inaba, H. Matsumoto, Y. Nakajima, F. Ito, and T. Shimizu, “High precision line profile measurements on C-13 acetylene using a near infrared frequency comb spectrometer,” J. Mol. Spectorsc. 249, 95–99 (2008).
[Crossref]
P. J. Mohr, B. N. Taylor, and D. B. Neweo, “CODATA recommended values of the fundamental physical constants: 2006,” J. Phys. Chem. Ref. Data 37, 1187–1284 (2008).
[Crossref]
I. M. Mills, P. J. Mohr, T. J. Quinn, B. N. Taylor, and E. R. Williams, “Redefinition of the kilogram, ampere, kelvin and mole: a proposed approach to implementing cipm recommendation 1 (ci-2005),” Metrologia 43, 227–246 (2006).
[Crossref]
T. Udem, R. Holzwarth, and T. W. Hansch, “Optical frequency metrology,” Nature 416, 233–237 (2002).
[Crossref]
[PubMed]
M. D. De Vizia, F. Rohart, ccedil ois, A. Castrillo, E. Fasci, L. Moretti, and L. Gianfrani, “Speed-dependent effects in the near-infrared spectrum of self-colliding h2o18 molecules,” Phys. Rev. A 83, 052506 (2011).
[Crossref]
D. A. Long, D. K. Havey, M. Okumura, C. E. Miller, and J. T. Hodges, “Cavity ring-down spectroscopy measurements of sub-doppler hyperfine structure,” Phys. Rev. A 81, 064502 (2010).
[Crossref]
A. Cygan, D. Lisak, R. S. Trawiński, and R. Ciuryło, “Influence of the line-shape model on the spectroscopic determination of the boltzmann constant,” Phys. Rev. A 82, 032515 (2010).
[Crossref]
C. Daussy, M. Guinet, A. Amy-Klein, K. Djerroud, Y. Hermier, S. Briaudeau, C. J. Bordé, and C. Chardonnet, “Direct determination of the boltzmann constant by an optical method,” Phys. Rev. Lett. 98, 250801 (2007).
[Crossref]
[PubMed]
G. Casa, A. Castrillo, G. Galzerano, R. Wehr, A. Merlone, D. Di Serafino, P. Laporta, and L. Gianfrani, “Primary gas thermometry by means of laser-absorption spectroscopy: Determination of the boltzmann constant,” Phys. Rev. Lett. 100, 200801 (2008).
[Crossref]
[PubMed]
B. Gao, W. Jiang, A.-W. Liu, Y. Lu, C.-F. Cheng, G.-S. Cheng, and S.-M. Hu, “Ultra sensitive near-infrared cavity ring down spectrometer for precise line profile measurement,” Rev. Sci. Instrum. 81, 043105 (2010).
[Crossref]
[PubMed]
A. O’Keefe and D. Deacon, “Cavity ring-down optical spectrometer for absorption measurements using pulsed laser sources,” Rev. Sci. Instrum. 59, 2544–51 (1988).
[Crossref]
A. Cygan, D. Lisak, P. Maslowski, K. Bielska, S. Wojtewicz, J. Domyslawska, R. S. Trawinski, R. Ciurylo, H. Abe, and J. T. Hodges, “Pound-drever-hall-locked, frequency-stabilized cavity ring-down spectrometer,” Rev. Sci. Instrum. 82, 063107 (2011).
[Crossref]
[PubMed]
J. T. Hodges, H. P. Layer, W. W. Miller, and G. E. Scace, “Frequency-stabilized single-mode cavity ring-down apparatus for high-resolution absorption spectroscopy,” Rev. Sci. Instrum. 75, 849–863 (2004).
[Crossref]
J. T. Hodges and R. Ciurylo, “Automated high-resolution frequency-stabilized cavity ring-down absorption spectrometer,” Rev. Sci. Instrum. 76, 023112 (2005).
[Crossref]
C. Lemarchand, M. Triki, B. Darquié, Ch. J. Bordé, C. Chardonnet, and C. Daussy, “Progress towards an accurate determination of the Boltzmann constant by Doppler spectroscopy,” New J. Phys.13, 073028 (2011).
[Crossref]