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Higher dimensional quantum communication in a curved spacetime: an efficient simulation of the propagation of the wavefront of a photon

机译:弯曲时空中的较高尺寸量子通信:高效模拟光子的波前的传播

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A photon with a modulated wavefront can produce a quantum communication channel in a larger Hilbert space. For example, higher dimensional quantum key distribution (HD-QKD) can encode information in the transverse linear momentum (LM) or orbital angular momentum (OAM) modes of a photon. This is markedly different than using the intrinsic polarization of a photon. HD-QKD has advantages for free space QKD since it can increase the communication channels tolerance to bit error rate (BER) while maintaining or increasing the channels bandwidth. We describe an efficient numerical simulation of the propagation photon with an arbitrary complex wavefront in a material with an isotropic but inhomogeneous index of refraction. We simulate the waveform propagation of an optical vortex in a volume holographic element in the paraxial approximation using an operator splitting method. We use this code to analyze an OAM volume-holographic sorter. Furthermore, there are analogue models of the evolution of a wavefront in the curved spacetime environs of the Earth that can be constructed using an optical medium with a given index of refraction. This can lead to a work-bench realization of a satellite HD-QKD system.
机译:具有调制波前的光子可以在较大的Hilbert空间中产生量子通信通道。例如,较高的尺寸量子密钥分布(HD-QKD)可以编码在横向线性动量(LM)或光子的轨道角动量(OAM)模式中的信息编码。这明显不同于使用光子的固有偏振。 HD-QKD具有自由空间QKD的优势,因为它可以在维护或增加通道带宽的同时增加通信信道容差到误码率(BER)。我们描述了具有在具有各向同性但不均匀折射率的材料中具有任意复杂波前的传播光子的高效数值模拟。我们使用操作员分裂方法模拟卷全息元件中的光学涡流的波形传播。我们使用此代码来分析OAM卷全息分拣机。此外,存在可以使用具有给定折射率的光学介质构造的地球的弯曲时空环境中的波前的展开的模拟模型。这可能导致卫星HD-QKD系统的工作台实现。

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