Showing posts with label Y. Chen. Show all posts
Showing posts with label Y. Chen. Show all posts

Tuesday, February 20, 2018

Abstract-Detecting the propagation effect of terahertz wave inside the two-color femtosecond laser filament in the air


J. Zhao, X. Zhang, S. Li, C. Liu, Y. Chen, Y Peng, Y. Zhu,

https://link.springer.com/article/10.1007/s00340-018-6913-1

In this work, to decide the existence of terahertz (THz) wave propagation effect, THz pulses emitted from a blocked two-color femtosecond laser filament with variable length were recorded by a standard electric–optic sampling setup. The phenomenon of temporal advance of the THz waveform’s peak with the increasing filament length has been observed. Together with another method of knife-edge measurement which aims at directly retrieving the THz beam diameter, both the experimental approaches have efficiently indicated the same filament range within which THz wave propagated inside the plasma column. At last, a preliminary two-dimensional near-field scanning imaging of the THz spot inside the cross section of the filament has been suggested as the third way to determine the issue of THz wave propagation effect.

Thursday, October 16, 2014

Abstract-Photonic Crystal Fano Laser: Terahertz Modulation and Ultrashort Pulse Generation


J. Mork, Y. Chen, and M. Heuck
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.113.163901

We suggest and analyze a laser with a mirror realized by Fano interference between a waveguide and a nanocavity. For small-amplitude modulation of the nanocavity resonance, the laser can be modulated at frequencies exceeding 1 THz, not being limited by carrier dynamics as for conventional lasers. For larger modulation, a transition from pure frequency modulation to the generation of ultrashort pulses is observed. The laser dynamics is analyzed by generalizing the field equation for conventional lasers to account for a dynamical mirror, described by coupled mode theory.
DOI: http://dx.doi.org/10.1103/PhysRevLett.113.163901
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  • Published 15 October 2014
  • Received 28 May 2014
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