Multicycle Terahertz Generation Using High-Energy Pulse Trains

C. Rentschler, Z. Zhang,U. Demirbas,K. Ravi, M. Pergament, N. H. Matlis, F. X. Kärtner

2023 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC)(2023)

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摘要
Frequency conversion in nonlinear crystals is a well-established method to provide narrowband, multicycle terahertz (THz) radiation for applications requiring high spectral purity like spectroscopy and electron acceleration [1], [2]. While significant progress has been made by using laser systems that produce pairs of narrow spectral lines separated by the THz frequency, optical-to- THz conversion efficiencies still remain below one percent [3], [4]. However, simulations have shown that multiple-percent efficiencies are achievable if the pump spectrum is composed of several lines [5]. In the time domain this corresponds to a regular train of pulses spaced by the inverse THz frequency. Here, we experimentally explore the parameter space of a new approach to multicycle THz generation based on tunable pulse trains and demonstrate its potential to boost conversion efficiencies.
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conversion efficiencies,electron acceleration,frequency conversion,high spectral purity,high-energy pulse trains,laser systems,multicycle terahertz,multiple-percent efficiencies,narrow spectral lines,narrowband,nonlinear crystals,parameter space,pump spectrum,spectroscopy,terahertz generation,THz frequency,THz generation,time domain this corresponds,tunable pulse trains
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