Literature DB >> 32121849

Towards high power longwave mid-IR frequency combs: power scalability of high repetition-rate difference-frequency generation.

Qian Cao, Franz X Kärtner, Guoqing Chang.   

Abstract

Frequency combs in the mid-IR wavelength are usually implemented by difference-frequency generation (DFG) that mixes pump pulses and signal pulses. Different from most optical parametric amplifiers that operate at a typical low repetition rate of <0.1 MHz, mid-IR frequency combs require that pump/signal pulse repetition rate must be at least as high as tens of MHz (normally >30 MHz). The DFG mixing high repetition rate (HRR) pulses limits the allowed pulse energy to prevent crystal damage. In this paper, we numerically investigate HRR DFG with a focus on the energy scalability of idler pulses. We show that HRR DFG-unlike optical parametric amplifiers-may operate in the linear regime, in which the idler pulse energy scales linearly with respect to the pump/signal pulse energy. Our simulation results suggest an efficient approach to energy scaling the idler mid-IR pulses in a HRR DFG: increase the signal pulse energy to the same level as the pump pulse energy. We also show that DFG seeded by pump/signal pulses at ∼2-µm range benefits from reduced group-velocity mismatch and exhibits better idler energy scalability. For example, 44.2-nJ pulses at 9.87 µm can be achieved by mixing 500-nJ, 2.0-µm pump pulses and 100-nJ, 2.508-µm signal pulses in a 2-mm-thick GaSe crystal. At the end of this paper, we show that such high-energy signal pulses can be derived from the pump pulses using a recently invented fiber-optic method. Therefore, implementation of high-power (>2 W) longwave mid-IR frequency combs is practically feasible.

Entities:  

Year:  2020        PMID: 32121849     DOI: 10.1364/OE.28.001369

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  2 in total

1.  Femtosecond pulses from a mid-infrared quantum cascade laser.

Authors:  Philipp Täschler; Mathieu Bertrand; Barbara Schneider; Matthew Singleton; Pierre Jouy; Filippos Kapsalidis; Mattias Beck; Jérôme Faist
Journal:  Nat Photonics       Date:  2021-11-22       Impact factor: 38.771

2.  Mode-locked short pulses from an 8 μm wavelength semiconductor laser.

Authors:  Johannes Hillbrand; Nikola Opačak; Marco Piccardo; Harald Schneider; Gottfried Strasser; Federico Capasso; Benedikt Schwarz
Journal:  Nat Commun       Date:  2020-11-13       Impact factor: 14.919

  2 in total

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