Prevention of polarization frequency splitting in isotropic medium with high-order transverse modes

IF 2 3区 物理与天体物理 Q3 OPTICS Applied Physics B Pub Date : 2025-03-07 DOI:10.1007/s00340-025-08430-1
Pengfei Zhou, Jinming Huang, Gang Huang, Tianshan Zhang, Jianing Li, Bingxuan Li, Ge Zhang
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Abstract

This paper investigates experimental and numerical simulation methods for achieving frequency degeneracy in high-order modes with orthogonal polarization of a CW diode-pumped Nd: YAG laser. In isotropic crystals, weak phase anisotropy from factors like inhomogeneous dopant distribution can cause polarization eigenmode frequency splitting. While frequency degeneracy can be achieved in the fundamental transverse mode through spot detection and frequency analysis, higher-order modes exhibit more complex frequency characteristics, and their interaction with this mechanism remains unclear. This study explores the polarization eigenmode frequency degeneracy in higher-order modes (TEM₅,₀). By introducing two quarter-wave plates into the resonator, we achieve effective frequency control, leading to polarization frequency degeneracy. Experimentally, we focus on the high-order mode generated by an off-axis laser. The polarization state is successfully controlled by rotating the angles of two quarter-wave plates in the resonator. Consequently, a linearly polarized TEM5,0 mode laser is produced, reaching a maximum polarization extinction ratio (PER) of 24.77 dB. To further understand this phenomenon, numerical simulations are conducted to analyze the mechanism of polarization frequency degeneracy. The results indicate that the initial phase difference between two polarization eigenmodes, caused by weak birefringence, can be effectively adjusted by fine-tuning orientations of the two quarter-wave plates in the cavity, thereby achieving polarization frequency degeneracy. This study presents a novel approach to polarization control for high-order mode laser.

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高阶横模各向同性介质中极化频裂的预防
研究了连续波二极管泵浦Nd: YAG激光器正交偏振高阶模频率简并的实验和数值模拟方法。在各向同性晶体中,掺杂不均匀分布等因素导致的弱相位各向异性会导致极化本征模频裂。虽然通过点检测和频率分析可以在基横模中实现频率简并,但高阶模表现出更复杂的频率特性,并且它们与该机制的相互作用尚不清楚。本研究探讨了高阶模式(TEM₅,0)的极化特征模频率简并。通过在谐振腔中引入两个四分之一波片,我们实现了有效的频率控制,导致了极化频率的简并。实验上,我们重点研究了离轴激光器产生的高阶模式。通过旋转谐振腔中两个四分之一波片的角度,成功地控制了偏振态。因此,产生了线性极化tem5,0模式激光器,最大偏振消光比(PER)为24.77 dB。为了进一步理解这一现象,通过数值模拟分析了极化频率简并的机理。结果表明,由于弱双折射引起的极化本征模初始相位差可以通过对腔内两个四分之一波片的取向进行微调来有效调节,从而实现极化频率简并。本研究提出了一种高阶模激光器偏振控制的新方法。
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来源期刊
Applied Physics B
Applied Physics B 物理-光学
CiteScore
4.00
自引率
4.80%
发文量
202
审稿时长
3.0 months
期刊介绍: Features publication of experimental and theoretical investigations in applied physics Offers invited reviews in addition to regular papers Coverage includes laser physics, linear and nonlinear optics, ultrafast phenomena, photonic devices, optical and laser materials, quantum optics, laser spectroscopy of atoms, molecules and clusters, and more 94% of authors who answered a survey reported that they would definitely publish or probably publish in the journal again Publishing essential research results in two of the most important areas of applied physics, both Applied Physics sections figure among the top most cited journals in this field. In addition to regular papers Applied Physics B: Lasers and Optics features invited reviews. Fields of topical interest are covered by feature issues. The journal also includes a rapid communication section for the speedy publication of important and particularly interesting results.
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