光参量放大器
太赫兹辐射
铌酸锂
光学
窄带
参数统计
四波混频
激光器
能量转换效率
非线性光学
材料科学
混合(物理)
光子
放大器
光电子学
物理
光放大器
量子力学
CMOS芯片
统计
数学
作者
Koustuban Ravi,M. Hemmer,Giovanni Cirmi,Fabian Reichert,Damian N. Schimpf,Oliver D. Mücke,Franz X. Kärtner
出处
期刊:Optics Letters
[The Optical Society]
日期:2016-08-05
卷期号:41 (16): 3806-3806
被引量:56
摘要
A highly efficient, practical approach to high-energy multi-cycle terahertz (THz) generation based on spectrally cascaded optical parametric amplification (THz-COPA) is introduced. Feasible designs are presented that enable the THz wave, initially generated by difference frequency generation between a narrowband optical pump and optical seed (0.1–10% of pump energy), to self-start a cascaded (or repeated) energy downconversion of pump photons in a single pass through a single crystal. In cryogenically cooled, periodically poled lithium niobate, unprecedented energy conversion efficiencies >8% achievable with existing pump laser technology are predicted using realistic simulations. The calculations account for cascading effects, absorption, dispersion, and laser-induced damage. Due to the simultaneous, coupled nonlinear evolution of multiple phase-matched three-wave mixing processes, THz-COPA exhibits physics distinctly different from conventional three-wave mixing parametric amplifiers. This, in turn, governs optimal phase-matching conditions, evolution of optical spectra, and limitations of the nonlinear process. Circumventing these limitations is shown to yield conversion efficiencies ≫10%.
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