首页> 外国专利> Apparatus for increasing the frequency difference and stability of orthogonally polarized beams from a Zeeman split laser

Apparatus for increasing the frequency difference and stability of orthogonally polarized beams from a Zeeman split laser

机译:用于增加来自塞曼分裂激光器的正交偏振光束的频率差和稳定性的设备

摘要

The present invention is a laser with a high reflector mirror and an output coupler mirror defining a laser resonator having an optical axis and optical path length. A gain medium, with a first refractive index and a first Verdet constant, is positioned in the resonator. The laser also includes an apparatus to excite and cause a population inversion in the gain medium to produce an output laser beam. An optically transparent medium is positioned in the laser resonator. The optically transparent medium has a second refractive index and a second Verdet constant. The second Verdet constant is typically larger than the first Verdet constant. One or more permanent and electromagnets are positioned at least partially around the exterior of the laser resonator. The magnets apply an axial magnetic field to at least a portion of the gain medium and the optically transparent medium producing a Zeeman split in the gain medium and also producing an optical path length difference between left and right circular polarizations in the laser resonator in both the gain medium and the optically transparent medium. The output laser beam is split into left and right circularly polarized output laser beams with a finite difference frequency that can be tuned and stabilized to a predetermined value which is higher than current Zeeman split lasers. The optically transparent medium can be a solid, liquid or gas, and the laser can be, by way of illustration and without limitation, a He--Ne, ion, or semiconductor laser.PPIn embodiments, where the gain medium is a solid or liquid, the functions of the optically transparent medium are included in the gain medium.
机译:本发明是具有高反射镜和输出耦合镜的激光器,其限定了具有光轴和光程长度的激光谐振器。具有第一折射率和第一维尔德常数的增益介质位于谐振器中。激光器还包括激发并引起增益介质中的粒子数反转以产生输出激光束的设备。光学透明介质位于激光谐振器中。光学透明介质具有第二折射率和第二维尔德常数。第二Verdet常数通常大于第一Verdet常数。一个或多个永久磁铁和电磁体至少部分地围绕激光谐振器的外部定位。磁铁将轴向磁场施加到增益介质和光学透明介质的至少一部分上,从而在增益介质中产生塞曼分裂,并在两个方向的激光谐振器中产生左右圆偏振之间的光程差增益介质和光学透明介质。该输出激光束被分成具有有限差分频率的左和右圆偏振输出激光束,该左,右圆偏振输出激光束可以被调谐和稳定到高于当前塞曼分离激光器的预定值。光学透明介质可以是固体,液体或气体,并且激光可以作为说明而非限制地是He-Ne,离子或半导体激光器。增益介质是固体或液体,光学透明介质的功能包括在增益介质中。

著录项

  • 公开/公告号US5586133A

    专利类型

  • 公开/公告日1996-12-17

    原文格式PDF

  • 申请/专利权人 DEBELL;GARY W.;

    申请/专利号US19950500393

  • 发明设计人 GARY E. SOMMARGREN;

    申请日1995-07-10

  • 分类号H01S3/13;

  • 国家 US

  • 入库时间 2022-08-22 03:10:54

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