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用于真空紫外/紫外和中红外全固态激光器的 BaMgF4 双折射和准相位匹配

Birefringent- and quasi phase-matching with BaMgF4 for vacuum-UV/UV and mid-IR all solid-state lasers.

作者信息

Víllora Encarnacion G, Shimamura Kiyoshi, Sumiya Keiji, Ishibashi Hiroyuki

机构信息

National Institute for Materials Center, 1-1 Namiki, Tsukuba, 305-0044, Japan.

出版信息

Opt Express. 2009 Jul 20;17(15):12362-78. doi: 10.1364/oe.17.012362.

Abstract

BaMgF(4) is a ferroelectric fluoride which shows a very wide transparency range extending from 125 nm to 13 microm. The conjunction of these properties confers to BaMgF(4) a unique chance for optical applications in the UV and mid-IR wavelength regions, where other nonlinear materials cannot be used. In particular its application as frequency converter in all solid-state lasers is considered. The wavelength dispersion of the refractive indices along the three optical principal axes is measured in the transparent region, and the Sellmeier coefficients for the three refractive indices are determined. The conditions for nonlinear optical processes are calculated for birefringent-matching and quasi phase-matching, with special emphasis in the UV and IR wavelength regions. Quasi phase-matching can be achieved in the whole transparent wavelength region, in contrast to birefringent-matching, which can be obtained in a limited range 573-5634 nm. First demonstration of second harmonic generation by quasi phase-matching with a ferroelectric fluoride is shown by frequency-doubling the emissions of a 1064 nm Nd:YAG laser and a tunable Ti:sapphire laser. The shortest emission is obtained in the UV at 368 nm, indicating the potential of BaMgF(4) as nonlinear medium for the fabrication of all solid-state lasers in the vacuum-UV/UV and mid-IR wavelength regions.

摘要

BaMgF₄是一种铁电氟化物,其透明度范围非常宽,从125纳米延伸至13微米。这些特性的结合赋予BaMgF₄在紫外和中红外波长区域进行光学应用的独特机会,而在这些区域其他非线性材料无法使用。特别考虑了其在全固态激光器中作为频率转换器的应用。在透明区域测量了沿三个光学主轴的折射率的波长色散,并确定了三个折射率的Sellmeier系数。计算了双折射匹配和准相位匹配的非线性光学过程条件,特别强调了紫外和红外波长区域。与双折射匹配(仅在573 - 5634纳米的有限范围内可实现)不同,准相位匹配可在整个透明波长区域实现。通过对1064纳米Nd:YAG激光器和可调谐钛宝石激光器的发射进行倍频,首次展示了利用铁电氟化物通过准相位匹配产生二次谐波。在紫外区域368纳米处获得了最短发射,这表明BaMgF₄作为在真空紫外/紫外和中红外波长区域制造全固态激光器的非线性介质的潜力。

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