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Design of optical superlattice to realize third-harmonic generation and multi-wavelength laser output and its application in the all-solid state laser

机译:实现三次谐波和多波长激光输出的光学超晶格设计及其在全固态激光器中的应用

摘要

The design of a special type of optical superlattice and its application in the all-solid state laser is involved in this invention. Nd ions doped laser crystal in common use can radiate three relatively intense spectral lines when excited: the first wavelength is around 900 nm; the second wavelength is around 1064 nm; the third wavelength is around 1300 nm, whose accurate wavelength are depended on their host crystal (for example, to Nd:YAG, they are 946 nm, 1064 nm and 1319 nm, respectively). On the other hand, for LiNbO3 (LN), LiTaO3 (LT), KTP and other ferroelectric crystals, the positive and negative 180° ferroelectric domains in these crystals can be arranged orderly according to certain sequence via crystal growth, electric field poling, and other state-of-the-art domain reversion technique, forming superlattice that is applicable to quasi-phase-matching (QPM) laser frequency conversion. This invention aims at the design of optical superlattice that can realize third-harmonic generation and coupled parametric process for such three emitting lines of Nd doped crystals and its application in the all-solid state laser. Such a superlattice, which can provide two or more effective reciprocal vectors, can participate in two or more QPM optical parametric processes. Different optical parametric processes in this kind of superlattice can couple each other via cascade effect. Therefore this type of superlattice can be used as an especial frequency-conversion crystal to acquire high-order harmonic generation of laser; in addition, it can realize the simultaneous output of multicolor laser or make the output of laser tunable by quasi-phase-matched frequency down-conversion. For instance, it is applicable to the frequency-conversion devices of all-solid state blue or ultraviolet laser, red-blue or green-ultraviolet dual color laser, and red-green-blue three fundamental colors laser, and can also be used as the source of entangled photon pair in the quantum telecommunication. The scheme can be extended to other active ions (such as Er, Yb, Tm, Sm etc.) doped laser crystal comprised in an all solid-state laser system.
机译:本发明涉及一种特殊类型的光学超晶格的设计及其在全固态激光器中的应用。常用的掺钕离子的激光晶体在激发时可以辐射出三个相对强烈的光谱线:第一波长约为900 nm;第二波长约为900 nm。第二波长在1064nm附近。第三波长约为1300 nm,其准确波长取决于其主体晶体(例如,对于Nd:YAG,分别为946 nm,1064 nm和1319 nm)。另一方面,对于LiNbO 3 (LN),LiTaO 3 (LT),KTP和其他铁电晶体,正负180°。这些晶体中的铁电畴可以通过晶体生长,电场极化和其他最新的畴反转技术按一定顺序有序排列,从而形成适用于准相位匹配(QPM)激光频率的超晶格转换。本发明旨在设计一种光学超晶格的设计,该光学超晶格可实现这种掺钕晶体的三束发射线的三次谐波产生和耦合参数化工艺及其在全固态激光器中的应用。可以提供两个或更多个有效倒数向量的超晶格可以参与两个或更多个QPM光学参数过程。这种超晶格中不同的光学参量过程可以通过级联效应彼此耦合。因此,这种超晶格可以用作特殊的频率转换晶体,以获得激光的高次谐波产生。此外,它还可以实现多色激光的同步输出,或者通过准相位匹配的频率下变频使激光的输出可调。例如,它适用于全固态蓝色或紫外激光,红蓝色或绿-紫外双色激光和红-绿-蓝三基色激光的频率转换装置,也可以用作量子电信中纠缠的光子对的来源。该方案可以扩展到全固态激光系统中包含的其他掺杂有活性离子(例如Er,Yb,Tm,Sm等)的激光晶体。

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