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作 者:胡悦 曹凤朝 董仁婧 郝辰悦 刘大禾[1] 石锦卫[1] Hu Yue;Cao Feng-Zhao;Dong Ren-Jing;Hao Chen-Yue;Liu Da-He;Shi Jin-Wei(Department of Physics and Applied Optics Beijing Area Major Laboratory,Beijing Normal University,Beijing 100875,China)
机构地区:[1]北京师范大学物理学系,应用光学北京市重点实验室,北京100875
出 处:《物理学报》2020年第22期313-319,共7页Acta Physica Sinica
基 金:国家自然科学基金(批准号:11674032,11774035,91950108)资助的课题。
摘 要:光学谐振腔是现代光学的基础性器件.本文从最常见的共焦腔出发,分别从代数解析和几何拓扑的角度解释了其稳定性随参数变化而发生突变的现象,给出了突变的数学原因和物理原因.从数学的角度看,共焦腔稳定性突变是因为反三角余弦函数的函数值在传统的定义域以外由复数向实数的突变;从几何拓扑的角度看,根据光线在腔内的传播路径定义拓扑荷,由于只有拓扑荷为零的腔是稳定的,且拓扑荷的变化是量子化的,因此共焦腔的稳定性发生突变.并根据其突变原因设计由双非稳腔组合的耦合腔,重新构建拓扑荷,实现了新的稳定腔,并且在其中发现了单腔中没有的新模式.Optical cavity is a fundamental device of modern optics and has a wide range of applications in the fields of laser generation,nonlinear optical conversion,and optical sensors.A major aspect of the properties of optical cavity is the stability analysis.According to different geometric losses,these optical cavities can be divided into three types:stable cavity,critical cavity,and unstable cavity.The determination of the stability of the optical cavity is the basic problem of a classic system,but the research and analysis of this point have been much insufficient in the past.In this paper,by extending the definition domain of the inverse trigonometric function,the propagation matrices of the symmetric confocal cavity and the asymmetric confocal cavity are solved.The sudden change of stability with the change of geometric parameters is explained by algebraic analysis and optical ray topology.The mathematical analysis shows that the stability catastrophe of confocal cavity is due to the sudden change in the value of inverse cosine function at the critical point of the traditional domain of definition.From the perspective of geometric topology,we define the topological charge of the cavities according to the geometric propagation path of light in the cavity.Only the cavities with zero topological charge are found to be stable,and the change of topological charge is quantized,which explains the sudden change of confocal cavity stability.Finally,we build a coupled stable cavity consisting of two unstable cavities with the same parameters.The quality factors of the coupled stable cavity and the unstable cavity are analyzed by the finite difference time domain method,which further verifies the origin of the sudden change in the stability of the confocal cavity.We propose that the coupled unstable dual cavities with opposite topological charges are able to be stable,and we also find that there are new modes in the coupled cavities which are not found in the corresponding single cavity.These findings suggest a new method fo
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