Tunable UV ∼ IR frequency comb generation via high-order sideband generation

Author:

Kim JeailORCID,Kang Hwihyeon,Elu Ugaitz,Kim Dasol,Haberstroh Florian,Sidiropoulos ThemistoklisORCID,Steinle Tobias,Baudisch Matthias,Ortmann Lisa,Landsman Alexandra S.,Biegert Jens,Chacón Alexis,Kim Dong Eon

Abstract

Abstract We propose the generation of a widely tunable UV-to-IR frequency comb by high-order sideband generation (HSB) spectrum emitted from semiconductors. In our theoretical simulations, we demonstrate the high-order sideband signals of two series (2m Ω seed  + (2n + 1) ω driver , and (2m + 1) Ω seed  + 2 n ω driver ), where m and n are integers of a seed pulse and a driver laser frequency, respectively. The simulations also reveal the intensity of HSB scale with the driver laser power, both perturbatively and non-perturbatively. We find that the harmonic position and spacing of the high-order sideband emission can be controlled by varying the seed pulse and driver photon energies. In the experiment, we applied a visible ( Ω seed  = 3.1 eV, ∼400 nm) seed pulse and mid-infrared (MIR, ω driver = 0.4 eV, 3.1 μm) driver pulses to ZnSe target. Our experimental observations confirmed the UV (4.7 eV, 263 nm and 3.9 eV, 317 nm) HSB generation.

Funder

Korea Institute for Advancement of Technology

HORIZON EUROPE European Research Council

H2020 European Research Council

Laserlab-Europe

HORIZON EUROPE Marie Sklodowska-Curie Actions

Spanish National Plan for Scientific and Technical Research and Innovation

Agència de Gestió d'Ajuts Universitaris i de Recerca

Centres de Recerca de Catalunya

Alexander von Humboldt-Stiftung

Energy Frontier Research Centers

National Research Foundation of Korea

Sistema Nacional de Investigación (SNI) and the Secretaría Nacional de Ciencia, Innovación y Tecnología (SENACYT) of Panama

National Research Foundation of Korea(NRF) grant funded by the Ministry of Science and ICT

Publisher

IOP Publishing

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