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Reciprocity in quantum, electromagnetic and other wave scattering

机译:量子,电磁和其他波散射中的互易性

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The reciprocity principle is that, when an emitted wave gets scattered on an object, the scattering transition amplitude does not change if we interchange the source and the detector-in other words, if incoming waves are interchanged with appropriate outgoing ones. Reciprocity is sometimes confused with time reversal invariance, or with invariance under the rotation that interchanges the location of the source and the location of the detector. Actually, reciprocity covers the former as a special case, and is fundamentally different from-but can be usefully combined with-the latter. Reciprocity can be proved as a theorem in many situations and is found violated in other cases. The paper presents a general treatment of reciprocity, discusses important examples, shows applications in the field of photon (M?ssbauer) scattering, and establishes a fruitful connection with a recently developing area of mathematics.
机译:互惠原理是,当发射的波在物体上散射时,如果我们互换源和探测器,则散射跃迁幅度不会改变,换句话说,如果入射波与适当的出射波互换,则散射跃迁幅度不会改变。互惠有时会与时间反转不变性相混淆,或者与在源位置和检测器位置互换的旋转下的不变性相混淆。实际上,互惠作为特殊情况涵盖了前者,并且与后者互有本质上的区别,但可以有效地与后者结合。互惠可以在许多情况下证明为一个定理,在其他情况下则被发现是对立的。本文介绍了互惠的一般处理方法,讨论了重要的例子,展示了在光子(M?ssbauer)散射领域中的应用,并与最近发展的数学领域建立了富有成果的联系。

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