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Conical refraction mode of an optical resonator

机译:光学谐振器的锥形折射模式

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The fundamental mode of a conical refraction resonator, i.e., an optical cavity where light experiences conical refraction (CR) from a biaxial crystal, is experimentally demonstrated in the piano-concave cavity configuration. We have discovered that the fundamental CR mode is characterized by the polarization and intensity structures of CR beams between the plane mirror and CR crystal, and it resembles the fundamental Gaussian mode with homogeneous polarization between the crystal and concave mirror. We theoretically explained this fundamental CR mode using the dual cone model and symmetry of the CR phenomenon and confirmed this explanation by numerical simulations. (C) 2020 Optical Society of America
机译:在钢琴 - 凹腔构造中实验证明了锥形折射谐振器的基本模式,即光从双轴晶体经历锥形晶体的锥形折射(Cr)。 我们已经发现,基本CR模式的特征在于平面镜和Cr晶体之间的Cr光束的偏振和强度结构,并且它类似于晶体和凹面镜之间具有均匀偏振的基本高斯模式。 理论上,使用双锥形模型和CR现象对称性解释了这一基本CR模式,并通过数值模拟证实了这一解释。 (c)2020美国光学学会

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