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Scott A Diddams

Showing results (1-10 of 81) with videos related to

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Optics Letters|May 5, 2012
High-power, hybrid Er:fiber/Tm:fiber frequency comb source in the 2 μm wavelength regionFlorian Adler, Scott A Diddams
Science (New York, N.Y.)|November 11, 2009
10-GHz self-referenced optical frequency combAlbrecht Bartels, Dirk Heinecke, Scott A Diddams
Optics Letters|December 26, 2008
Generation of a 20 GHz train of subpicosecond pulses with a stabilized optical-frequency-comb generatorShijun Xiao, Leo Hollberg, Scott A Diddams
Nature|February 9, 2007
Molecular fingerprinting with the resolved modes of a femtosecond laser frequency combScott A Diddams, Leo Hollberg, Vela Mbele
Optics Letters|June 29, 2012
Generation of a 660-2100 nm laser frequency comb based on an erbium fiber laserGabriel Ycas, Steve Osterman, Scott A Diddams
Science (New York, N.Y.)|July 18, 2020
Optical frequency combs: Coherently uniting the electromagnetic spectrumScott A Diddams, Kerry Vahala, Thomas Udem
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|October 11, 2005
Study of the excess noise associated with demodulation of ultra-short infrared pulsesEugene N Ivanov, Scott A Diddams, Leo Hollberg
Physical Review Letters|February 2, 2013
Hybrid electro-optically modulated microcombsPascal Del'Haye, Scott B Papp, Scott A Diddams
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|May 15, 2003
Experimental study of noise properties of a Ti:sapphire femtosecond laserEugene N Ivanov, Scott A Diddams, Leo Hollberg
Optics Express|September 22, 2011
Offset frequency dynamics and phase noise properties of a self-referenced 10 GHz Ti:sapphire frequency combDirk C Heinecke, Albrecht Bartels, Scott A Diddams
Pageof 9

Showing results (1-10 of 81) with videos related to

Sort By:
Pageof 9
Optics Letters|May 5, 2012
High-power, hybrid Er:fiber/Tm:fiber frequency comb source in the 2 μm wavelength regionFlorian Adler, Scott A Diddams
Science (New York, N.Y.)|November 11, 2009
10-GHz self-referenced optical frequency combAlbrecht Bartels, Dirk Heinecke, Scott A Diddams
Optics Letters|December 26, 2008
Generation of a 20 GHz train of subpicosecond pulses with a stabilized optical-frequency-comb generatorShijun Xiao, Leo Hollberg, Scott A Diddams
Nature|February 9, 2007
Molecular fingerprinting with the resolved modes of a femtosecond laser frequency combScott A Diddams, Leo Hollberg, Vela Mbele
Optics Letters|June 29, 2012
Generation of a 660-2100 nm laser frequency comb based on an erbium fiber laserGabriel Ycas, Steve Osterman, Scott A Diddams
Science (New York, N.Y.)|July 18, 2020
Optical frequency combs: Coherently uniting the electromagnetic spectrumScott A Diddams, Kerry Vahala, Thomas Udem
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|October 11, 2005
Study of the excess noise associated with demodulation of ultra-short infrared pulsesEugene N Ivanov, Scott A Diddams, Leo Hollberg
Physical Review Letters|February 2, 2013
Hybrid electro-optically modulated microcombsPascal Del'Haye, Scott B Papp, Scott A Diddams
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|May 15, 2003
Experimental study of noise properties of a Ti:sapphire femtosecond laserEugene N Ivanov, Scott A Diddams, Leo Hollberg
Optics Express|September 22, 2011
Offset frequency dynamics and phase noise properties of a self-referenced 10 GHz Ti:sapphire frequency combDirk C Heinecke, Albrecht Bartels, Scott A Diddams
Pageof 9