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窄带、周期性极化铌酸锂纳秒非共振光学参量振荡器的能量缩放

Energy scaling of a narrowband, periodically poled LiNbO, nanosecond, nonresonant optical parametric oscillator.

作者信息

Temel Tugba, Murray Robert T, Wang Li, Chen Weidong, Schirrmacher André, Divliansky Ivan B, Mhibik Oussama, Glebov Leonid B, Petrov Valentin

出版信息

Appl Opt. 2024 Mar 1;63(7):1811-1814. doi: 10.1364/AO.514729.

Abstract

We demonstrate that 3-mm-thick, periodically poled enables energy scaling of a nonresonant optical parametric oscillator operated in the narrowband mode with a volume Bragg grating at the signal wavelength. Utilizing the full available pump power at 1064 nm, we obtained maximum average powers of 2.25 and 2.08 W for the signal (1.922 µm) and idler (2.383 µm) pulses at 10 kHz, at a total conversion efficiency of 32.8%, which represents a fourfold increase in terms of peak powers over our previous work. The signal and idler spectral linewidths were ∼1 , with pulse lengths of ∼6 and an idler beam propagation factor of ∼5.

摘要

我们证明,厚度为3毫米的周期性极化……能够实现非共振光学参量振荡器在窄带模式下的能量缩放,该振荡器在信号波长处使用体布拉格光栅。利用1064纳米处的全部可用泵浦功率,我们在10千赫兹时获得了信号(1.922微米)和闲频光(2.383微米)脉冲的最大平均功率,分别为2.25瓦和2.08瓦,总转换效率为32.8%,这意味着峰值功率比我们之前的工作提高了四倍。信号和闲频光的光谱线宽约为1,脉冲长度约为6,闲频光束传播因子约为5。

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