PPT-Cavity-Enhanced Direct Frequency Comb Velocity Modulation Spectroscopy
Author : mary | Published Date : 2023-09-21
Laura Sinclair William Ames Tyler Coffey Kevin Cossel Jun Ye and Eric Cornell Funding NSF and the WM Keck Foundation Advantages of Combining CavityEnhanced Direct
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Cavity-Enhanced Direct Frequency Comb Velocity Modulation Spectroscopy: Transcript
Laura Sinclair William Ames Tyler Coffey Kevin Cossel Jun Ye and Eric Cornell Funding NSF and the WM Keck Foundation Advantages of Combining CavityEnhanced Direct Frequency Comb Spectroscopy with . Overview. Frequency Metrology. Measuring Frequency Gaps. Frequency Combs as Optical Synthesizers. Time Domain Applicatons . Stabilizing the Carrier Envelope Phase. Old and new Precision Spectroscopies. interferometry. Steven van den Berg. International Colloquium . Observatoire. de Haute Provence . 23-27 September 2013. Outline. . 2. Introduction to VSL. Introduction to the frequency comb. Distance determination based on:. Frequency combs – evolutionary tree. Overview. Basic Features: Frequency . C. ombs. Applications:. Frequency Metrology. Measuring Frequency Gaps. Frequency Combs as Optical Synthesizers. Time Domain Applicatons . 3. +. James N. Hodges. , Adam J. Perry, Brian M. . Siller. , Benjamin J. McCall. Outline. Motivation. Fundamental Physics. Astronomy. Instrument Description. Transition Frequency Results. Wavelength Calibration Testing. Daniel Lisak. Nicolaus Copernicus University, . Institute. of . Physics. , Toruń, Poland. Motivation. High-. accuracy. . unperturbed. . H. 2. , HD, D. 2. . transition. . frequencies. Testing. . and. K.S.E. Eikema. VU University Amsterdam. High-precision Ramsey-comb spectroscopy in the deep-ultraviolet for testing QED. PSAS conference 2016-05-25. Motivation/background. 2. Results from (. muonic. ν. 1. . ν. . 3. BAND OF ACETYLENE: . INTENSITY AND TRANSITION DIPOLE MOMENT. Kana . Iwakuni. ,. a,b,d. ,†. . Sho. . Okubo,. b,d. Koichi M. T. . Yamada,. b. Hajime . Inaba,. b,d. Atsushi . D.A. Long. , A.J. Fleisher, D.F . Plusquellic. , J.T. Hodges. National Institute of Standards and Technology. time. T. carrier frequency (. f. c. ). comb teeth. frequency. Combs from chirped waveforms. ultra-low . noise frequency combs. W. Hänsel. 1. , Michele . Giunta. 1,2 . , K. Beha. 1. , A. Perry. 1. , R. . Holzwarth. . 1,2. Menlo Systems GmbH, Munich, Germany. Max-Planck Institute for Quantum Optics, . Mary L. Rad. , Monique M. . Mezher. and Kevin K. Lehmann. University of Virginia, Charlottesville, VA. Benjamin M. Gaston. Case Western Reserve University, Cleveland, OH. Introduction. http://www.nobelprize.org/nobel_prizes/medicine/laureates/1998/illpres/. Electro-optic Frequency Combs. Adam J. Fleisher,. 1. . David A. Long,. 1. David F. Plusquellic,. 2. Joseph T. Hodges. 1. 1. Material Measurement Laboratory. National Institute of Standards & Technology. Application to the Gas Metrology of CO. 2. , H. 2. O, and N. 2. O. Adam J. Fleisher, . David A. Long, Joseph T. Hodges. Material Measurement Laboratory. National Institute of Standards & Technology. 12. th. International User Meeting on Cavity Enhanced Spectroscopy, 13 June, 2017. 1A12. Charles R. Markus. , Jefferson E. McCollum, Thomas S. Dieter, Philip A. . Kocheril. , and Benjamin J. McCall. Hydrogen. . Deuterium. Arthur . Matveev. , Alexey . Grinin. , . Lothar . Maisenbacher. , Vitaly Andreev, Dylan Yost,. . Randolf. Pohl, Theodor W. . Hänsch. , Thomas . Udem. PRP 2018. Why Deuterium?.
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