论文标题
在非线性光学元件中具有极化Möbius带的非线性光学元件中的半数角动量
Conservation of a Half-Integer Angular Momentum in Nonlinear Optics with a Polarization Möbius Strip
论文作者
论文摘要
能量,线性动量和角动量的对称性和保护定律在物理学中起着核心作用,尤其是在非线性光学中。最近,已经公布了具有非琐碎拓扑的光场,例如极化Möbius条或圆环 - 结束。它们不能与轨道和自旋角动量(OAM和SAM)的明确定义的值相关,但是在协调旋转下是不变的,即由广义角动量(GAM)算子(OAM和SAM运算符的混合物)产生的旋转对称性。 GAM的发现与Integer-valued OAM和SAM的不同,可以具有任意价值,并在非线性光学过程中提出了其保护的问题。通过使用极化Möbius带并在XUV范围内实现新型的OAM表征方法,我们实验观察到GAM的保存,每个谐波都具有与谐波顺序相等的基本场的谐波。因此,GAM被揭示为适当的量子数,以描述由包含拓扑极化奇点的光场驱动的非线性过程。
Symmetries and conservation laws of energy, linear momentum and angular momentum play a central role in physics, in particular in nonlinear optics. Recently, light fields with non trivial topology, such as polarization Möbius strips or torus-knot beams, have been unveiled. They cannot be associated to well-defined values of orbital and spin angular momenta (OAM and SAM), but are invariant under coordinated rotations, i.e. rotational symmetries that are generated by the generalized angular momentum (GAM) operator, a mixture of the OAM and SAM operators. The discovery of the GAM, which at variance with integer-valued OAM and SAM, can have arbitrary value, and raises the question of its conservation in nonlinear optical processes. By driving high harmonic generation with a polarization Möbius strip and implementing novel OAM characterization methods in the XUV range, we experimentally observe the conservation of the GAM, each harmonic carrying a precise half-integer GAM charge equal to that of the fundamental field multiplied by the harmonic order. The GAM is thus revealed as the appropriate quantum number to describe nonlinear processes driven by light fields containing topological polarization singularities.