Showing posts with label Seizi Nishizawa. Show all posts
Showing posts with label Seizi Nishizawa. Show all posts

Thursday, May 1, 2014

Abstract-Fast-Scan Terahertz Time Domain Spectrometer Based on Laser Repetition Frequency Modulation


Takashi Furuya1, Elmer S. Estacio1, Kazuki Horita1, Christopher T. Que1, Kohji Yamamoto1, Fumiaki Miyamaru2, Seizi Nishizawa2,3 and Masahiko Tani1

1 Research Center for Development of Far-Infra Red Region, University of Fukui, Fukui 910-8507, Japan
2 Shinshu University, Matsumoto, Nagano 390-8621, Japan
3 Advanced Infrared Spectroscopy Co., Ltd., Hachioji, Tokyo 193-0835, Japan 

http://iopscience.iop.org/1347-4065/52/2R/022401/
We propose a high-speed scanning terahertz (THz) time-domain spectrometer (TDS) based on optical sampling by repetition frequency modulation (OSREFM) using a repetition-frequency-tunable femtosecond fiber laser. Repetition frequency modulation is controlled by a highly stabilized external sweep generator. The fast scan of the time-delay between the pump and probe pulses is similar to an optical sampling with cavity tuning (OSCAT) THz-TDS system. However, the advantage of this technique is that it does not require physically moving components and uses only one laser system having an electronically modulated repetition rate. The time window and scanning time of this system depend on the modulation frequency range and the sweeping speed of the laser. In this study, we demonstrate the acquisition of a ~300 ps-window THz time waveform within 3 ms at a scan rate of 333 Hz.

Tuesday, April 22, 2014

Abstract-A polarization-sensitive 4-contact detector for terahertz time-domain spectroscopy




Dmitry S. Bulgarevich, Makoto Watanabe, Mitsuharu Shiwa, Gudrun Niehues, Seizi Nishizawa, and Masahiko Tani  »View Author Affiliations


Optics Express, Vol. 22, Issue 9, pp. 10332-10340 (2014)
http://dx.doi.org/10.1364/OE.22.010332
http://www.opticsinfobase.org/oe/abstract.cfm?uri=oe-22-9-10332
A light polarization angle-sensitive photoconductive detector for terahertz time-domain spectroscopy is computer-modeled, microfabricated, and tested. The experimental results show good agreement with the linear angular response for an ideal detector. The detector’s frequency, angular, and crosstalk responses are discussed in the context of theoretical and experimental considerations.
© 2014 Optical Society of America