Publikation: 12-fs pulses from a continuous-wave-pumped 200-nJ Ti:sapphire amplifier at a variable repetition rate as high as 4 MHz
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Optics Letters. Optical Society of America (OSA). 2003, 28(21), pp. 2118-2120. ISSN 0146-9592. eISSN 1539-4794. Available under: doi: 10.1364/OL.28.002118
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We demonstrate a novel compact femtosecond Ti:sapphire laser system operating at repetition rates from 10 kHz to 4 MHz. The scheme is based on the combination of a broadband cavity-dumped oscillator and a double-pass Ti:sapphire amplifier pumped by a low-noise cw solid-state laser. Amplified pulses with an extremely smooth spectrum, a duration of only 12 fs, and less than 0.25% rms fluctuation are generated in a beam with đť‘€ 2 <1.2 M2<1.2 . A maximum pulse energy of 210 nJ and an average output power of as much as 720 mW are achieved. This output energy is sufficient to generate a stable continuum in a sapphire disk.
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HUBER, Rupert, Florian ADLER, Alfred LEITENSTORFER, Matthias BEUTTER, Peter BAUM, Eberhard RIEDLE, 2003. 12-fs pulses from a continuous-wave-pumped 200-nJ Ti:sapphire amplifier at a variable repetition rate as high as 4 MHz. In: Optics Letters. Optical Society of America (OSA). 2003, 28(21), pp. 2118-2120. ISSN 0146-9592. eISSN 1539-4794. Available under: doi: 10.1364/OL.28.002118BibTex
@article{Huber2003pulse-51968,
year={2003},
doi={10.1364/OL.28.002118},
title={12-fs pulses from a continuous-wave-pumped 200-nJ Ti:sapphire amplifier at a variable repetition rate as high as 4 MHz},
number={21},
volume={28},
issn={0146-9592},
journal={Optics Letters},
pages={2118--2120},
author={Huber, Rupert and Adler, Florian and Leitenstorfer, Alfred and Beutter, Matthias and Baum, Peter and Riedle, Eberhard}
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<dcterms:abstract xml:lang="eng">We demonstrate a novel compact femtosecond Ti:sapphire laser system operating at repetition rates from 10 kHz to 4 MHz. The scheme is based on the combination of a broadband cavity-dumped oscillator and a double-pass Ti:sapphire amplifier pumped by a low-noise cw solid-state laser. Amplified pulses with an extremely smooth spectrum, a duration of only 12 fs, and less than 0.25% rms fluctuation are generated in a beam with đť‘€ 2 <1.2 M<sup>2</sup><1.2 . A maximum pulse energy of 210 nJ and an average output power of as much as 720 mW are achieved. This output energy is sufficient to generate a stable continuum in a sapphire disk.</dcterms:abstract>
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