首页> 外文会议>Quantum Electronics and Laser Science Conference, 1996. QELS '96., Summaries of Papers Presented at the >Higher-order space charge field effects on the evolution of spatial solitons in biased photorefractive crystals
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Higher-order space charge field effects on the evolution of spatial solitons in biased photorefractive crystals

机译:高阶空间电荷场对偏光折射晶体中空间孤子演化的影响

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Summary form only given. Recently, photorefractive (PR) spatial optical solitons have been the focus of considerable attention. Of particular interest are the so-called screening solitons that occur in steady state when an external bias voltage is appropriately applied to a PR crystal. These soliton states are known to occur when the drift term dominates in the expression of the space charge field. In a recent study, the effects arising from first-order diffusion terms have also been investigated. It was found that the PR soliton can experience adiabatically self-deflection that varies linearly with the applied electric field. However, recent experiments suggest that this self-deflection can exceed that predicted by theory, especially in the regime of quite high bias fields. To account for this discrepancy, we investigate the effects of other higher-order electric field terms on the evolution of bright steady-state solitons in PR media.
机译:仅提供摘要表格。近来,光折变(PR)空间光学孤子已经成为相当关注的焦点。当将外部偏置电压适当地施加到PR晶体时,在稳定状态下发生的所谓的筛选孤子会引起人们的特别关注。众所周知,当漂移项在空间电荷场的表达式中占主导地位时,就会发生这些孤子状态。在最近的研究中,还研究了由一阶扩散项引起的影响。发现PR孤子可以经历绝热自偏转,该自偏转随施加的电场线性变化。但是,最近的实验表明,这种自偏转可能会超出理论上的预测,特别是在偏磁场较高的情况下。为了解决这一差异,我们研究了其他高阶电场对PR介质中明亮稳态孤子演化的影响。

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