首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Propagation of coupled super-Gaussian beam pairs in strong nonlocal media
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Propagation of coupled super-Gaussian beam pairs in strong nonlocal media

机译:耦合超高斯光束对在强非局域介质中的传播

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The propagation of two mutually incoherent coupled super-Gaussian (SG) beam pairs in strong nonlocal media was studied by variational approach and numerical simulation. For forming a SG vector solitary wave, the total initial power must be equal to the critical power and the ratio of the two beam widths should be equal to a certain value. The numerical results show that the normalized critical power is a monotonically increase function of the order of SG solitary wave. Therefore, the phase shift, which is effectively determined by the critical power, will increase quickly with the order of SG solitary wave increasing. Since the phase shift is large for the low-order SG solitary wave and SG beam has some characteristics different with Gaussian beam, this theoretical result maybe has some potential applications value. (C) 2015 Elsevier GmbH. All rights reserved.
机译:通过变分法和数值模拟研究了两个互不相干的耦合超高斯(SG)光束对在强非局域介质中的传播。为了形成SG矢量孤波,总初始功率必须等于临界功率,并且两个光束宽度之比应等于某个值。数值结果表明,归一化临界功率是SG孤波阶的单调增加函数。因此,由SG孤立波的阶数增加,有效地由临界功率决定的相移将迅速增加。由于低阶SG孤波的相移较大,并且SG光束具有与高斯光束不同的特性,因此该理论结果可能具有一定的潜在应用价值。 (C)2015 Elsevier GmbH。版权所有。

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