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Dive into the research topics where Marc Tremont is active.

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Featured researches published by Marc Tremont.


Applied Physics Letters | 2005

Broadband InGaAs tapered diode laser sources for optical coherence radar and coherence tomography

Oliver Casel; Harry Fuchs; Marc Tremont; Dirk Woll; R. Wallenstein

This letter reports on broadband laser sources based on InGaAs tapered diode laser amplifiers with external optical feedback. The generated 920nm radiation with a bandwidth of up to 20nm and a power of a few hundred milliwatts is emitted in an almost diffraction limited beam. Spectral filtering and subsequent amplification in a second tapered amplifier provides radiation with spectral widths in the range of 20to40nm and optical output powers of up to 2.5W.


quantum electronics and laser science conference | 2006

550 mW of blue radiation generated by a frequency doubled mode-locked InGaAs diode laser MOPA system

Harry Fuchs; Marc Tremont; Oliver Casel; Dirk Woll; R. Wallenstein

We report on the generation of 550 mW of 460 nm blue radiation by single pass frequency doubling the picosecond pulses of a mode-locked InGaAs diode laser MOPA system in periodically poled KTP.


Applied Physics Letters | 2005

Intensity-modulated blue light generated by frequency doubling of wavelength-modulated high-power diode-laser radiation

Dirk Woll; Marc Tremont; Harry Fuchs; Oliver Casel; R. Wallenstein

A scheme for the generation of modulated blue laser radiation is demonstrated. The 923nm radiation of a high-power diode-laser master-oscillator power-amplifier system is wavelength modulated within a range of 0.2nm by modulating the injection current of the distributed feedback (DFB) diode oscillator. Single-pass frequency doubling of the generated radiation in periodically poled potassium titanyl phospate converts the wavelength modulation into an intensity modulation with a contrast ratio exceeding 700:1. The 3dB modulation bandwidth of 35kHz is limited by the speed of the wavelength tuning of the DFB oscillator.


lasers and electro-optics society meeting | 2002

Compact visible laser systems based on frequency doubled diodes

Harry Fuchs; Marc Tremont; Oliver Casel; R. Wallenstein

Compact, diode based laser sources of visible radiation are of interest for many applications such as printing, optical data storage or optical displays. Most applications. require laser radiation in the red (630 - 640 nm), green (510 - 530 nm) and/or blue (450 - 470 nm) with a power of 0.5 - 2 W in an almost diffraction limited beam. The results obtained so far clearly indicate that frequency doubled, high power master-oscillator power-amplifier (MOPA) systems are powerful sources of blue laser radiation. With InGaAs lasers operating at other wavelengths (such as 1060 nm) this scheme could well be used for the reliable generation of powerful laser light at other (green) wavelengths.


conference on lasers and electro optics | 2000

Picosecond optical parametric oscillator directly pumped by a mode-locked diode laser

Marc Tremont; M.E. Klein; A. Robertson; D. Woll; K.-J. Boller; R. Wallenstein

Summary form only given.In recent years, the optical parametric oscillator (OPO) has been successfully implemented as a convenient source of tunable coherent radiation in the ultra-short pulse regime. We present what is believed to be the first optical parametric oscillator synchronously pumped directly by a CW modelocked diode laser system. The resulting, ultrahigh repetition rate of 2.5 GHz and the broad wavelength tunability make the OPO interesting for applications such as the testing and characterisation of WDM transmission systems.


conference on lasers and electro optics | 2000

Generation of 110 mW of blue radiation by single pass frequency doubling the output of a mode-locked high-power diode laser

D. Woll; J. Schumacher; A. Robertson; Marc Tremont; R. Wallenstein

Summary form only given. We report the generation of 110 mW of blue light at 460 nm by single pass frequency doubling of picosecond pulses emitted by an InGaAs diode master-oscillator power-amplifier (MOPA) in periodically poled KTiOPO/sub 4/ (KTP). To our knowledge this is the highest average power generated by frequency doubling diode laser radiation without the use of a resonant enhancement cavity.


Applied Physics B | 2005

Blue 489-nm picosecond pulses generated by intracavity frequency doubling in a passively mode-locked optically pumped semiconductor disk laser

Oliver Casel; Dirk Woll; Marc Tremont; Harry Fuchs; R. Wallenstein; E. Gerster; P. Unger; M. Zorn; Markus Weyers


Applied Physics B | 2007

High-power ps InGaAs diode laser MOPA system for efficient frequency doubling in periodically poled KTP

Harry Fuchs; Marc Tremont; Oliver Casel; Dirk Woll; Thorsten Ulm; Johannes A. L’huillier; R. Wallenstein


Archive | 2005

LASERS, OPTICS, AND OPTOELECTRONICS 191101 Broadband InGaAs tapered diode laser sources for optical coherence radar and coherence tomography (3 pages)

Oliver Casel; Harold Fuchs; Marc Tremont; Dirk Woll; R. Wallenstein; Nir Dahan; Avi Niv; Gabriel Biener; Vladimir Kleiner; Erez Hasman; W. Zhang; Ho-Jin Lim; Masato Taguchi; Shiao-Li Tsao; Bijan Movaghar; Manijeh Razeghi; M. H. Shih; Woo Jun Kim; Wan Kuang; Jiang-Rong Cao; Sang-Jun Choi; P. Daniel Dapkus; Jinhyong Lim; Myeongkyu Lee; Eunkyoung Kim; Pallab K. Bhattacharya; Xin Hong Su; Soumen Chakrabarti; G. Ariyawansa; A. G. Unil Perera


Archive | 2005

LASERS, OPTICS, AND OPTOELECTRONICS 151101 Intensity-modulated blue light generated by frequency doubling of wavelength-modulated high-power diode-laser radiation (3 pages)

Dirk Woll; Marc Tremont; Harold Fuchs; Oliver Casel; R. Wallenstein; Yuanhao Liu; Xiaoyong Hu; Dongxiang Zhang; Bingying Cheng; Daozhong Zhang; Qingbo Meng; Sumith V. Bandara; Sarath D. Gunapala; John K. Liu; S. B. Rafol; Cory J. Hill; Ting Yu; Jason M. Mumolo; Thang Trinh; J. M. Fastenau; Amy W. K. Liu; Pubali Datta; Subhas Chandra Mukhopadhyay; G. K. Samanta; Sajal K. Das; Antonio Agnesi; Kartik Srinivasan; Matthew Borselli; Thomas J. Johnson; Paul E. Barclay

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Harry Fuchs

Kaiserslautern University of Technology

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Oliver Casel

Kaiserslautern University of Technology

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R. Wallenstein

Kaiserslautern University of Technology

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Dirk Woll

Kaiserslautern University of Technology

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R. Wallenstein

Kaiserslautern University of Technology

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D. Woll

Kaiserslautern University of Technology

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Johannes A. L’huillier

Kaiserslautern University of Technology

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L. Frieb

Kaiserslautern University of Technology

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