Optical bandgaps, level crossings and Berry phase in a rotating Sagnac Interferometer

H. Srinivasan, N. Viswanathan
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引用次数: 1

Abstract

A Sagnac interferometer’s ring structure enables counter propagating light modes to periodically encounter the same optical elements, effectively simulating infinite periodic potential of a one dimensional crystal. This discrete translational symmetry causes the dispersion of counter propagating beams to acquire a band structure. The band gap between modes arise when their degeneracy is lifted by introducing non-reciprocal effects such as rotation of the interferometer which breaks the time reversal symmetry for all but certain discrete values of angular rotation frequencies at which the two bands cross each other. The coupling between counter propagating modes is examined in a two dimensional state space. We study the interplay between these optical level crossings and Berry curvature to show the accumulation of wave vector dependent Berry phase
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旋转Sagnac干涉仪中的光学带隙、平交叉点和贝里相位
Sagnac干涉仪的环形结构使反传播光模式周期性地遇到相同的光学元件,有效地模拟了一维晶体的无限周期势。这种离散的平移对称性使反向传播光束的色散获得带结构。当引入非互反效应(如干涉仪的旋转)解除它们的简并性时,模式之间的带隙就产生了,除了两个带交叉的角旋转频率的某些离散值外,干涉仪的旋转破坏了所有的时间反转对称性。在二维状态空间中研究了反传播模式之间的耦合。我们研究了这些光学平交点与贝里曲率之间的相互作用,以显示波矢量依赖于贝里相位的积累
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