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Orthogonality breaking induces extraordinary single-mode transparency in an elaborate waveguide with wall corrugations

机译:正交断裂在带有壁波纹的精致波导中引起非凡的单模透明性

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摘要

Orthogonality plays a fundamental role in various mathematical theorems and in physics. The orthogonal eigenfunctions that represent the intrinsic motions of various physical systems can also be regarded as transverse wave modes in a straight waveguide. Because of their orthogonality, these modes propagate independently, without mutual interference. When the wall separation fluctuates, the former mode orthogonality is destroyed because of the change in the Euclidean space of the system. Here, we experimentally demonstrate the extraordinary single-mode transparency that arises as a result of the intense mode interference induced by orthogonality breaking in a waveguide with a varying cross section. A mode diagram is also introduced to illuminate these mode interactions. In particular, measurements of the transverse field distributions indicate that a three-mode interaction leads to a single high-order mode that penetrates through the lower-mode bandgaps when the wall period is carefully selected. The observation of Bessel-like transverse distributions is promising for applications in wave-control engineering.
机译:正交性在各种数学定理和物理学中起着基本作用。代表各种物理系统内在运动的正交本征函数也可以视为直波导中的横波模式。由于它们的正交性,这些模式独立传播,而不会相互干扰。当壁间距波动时,由于系统欧几里德空间的变化,破坏了先前的模式正交性。在这里,我们通过实验证明了异常的单模透明性是由于在具有变化的横截面的波导中由正交性破坏引起的强模干涉而产生的。还引入了一个模式图来阐明这些模式的相互作用。特别是,对横向场分布的测量表明,当精心选择壁周期时,三模式相互作用会导致单个高阶模式穿透低模式带隙。 Bessel形横向分布的观察有望用于波浪控制工程中。

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