SOLITON SPIN AND WAVE-PARTICLE DUALITY

S. Mitatha, S. Glomeglom, C. Teeka, J. Ali, P. Yupapin
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引用次数: 3

Abstract

By using the optical add-drop filter which is formed by a microring resonator, and after a dark soliton pulse is fed into an input port of the add-drop filter, the orthogonal soliton pair (dark and bright solitons) can be formed within the system and detected simultaneously at the output ports. Under the resonant condition, the conversion of dark and bright solitons corresponding to the left-hand and right-hand soliton orientations can be generated and seen. Whenever a soliton (photon) is absorbed by an object, an angular momentum of either +ℏ or -ℏ is imparted to the object, in which two possible soliton states known as soliton spins are exhibited and confirmed by the helical phase presentation. In application, the train of orthogonal solitons, i.e. many solitons (photons) with slightly different wavelengths can be generated by using the modified add-drop filter, which is available for many soliton spins and long distance spin transport investigations.
孤子自旋和波粒二象性
利用微环谐振腔形成的光学加降滤波器,将暗孤子脉冲送入加降滤波器的输入口后,在系统内形成正交孤子对(暗孤子和亮孤子),并在输出口同时检测。在共振条件下,可以产生并观察到左孤子和右孤子方向对应的暗孤子和亮孤子的转换。当一个孤子(光子)被一个物体吸收时,一个角动量为+ h或- h的角动量被传递给这个物体,在这个角动量中,被称为孤子自旋的两种可能的孤子状态被展示出来,并被螺旋相表示所证实。在实际应用中,利用改进的加-降滤波器可以产生波长略有不同的正交孤子序列,即许多孤子(光子),可用于许多孤子自旋和长距离自旋输运的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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