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Remote Sampling with Applications to General Entanglement Simulation

机译:远程采样及其在一般纠缠仿真中的应用

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We show how to sample exactly discrete probability distributions whose defining parameters are distributed among remote parties. For this purpose, von Neumann’s rejection algorithm is turned into a distributed sampling communication protocol. We study the expected number of bits communicated among the parties and also exhibit a trade-off between the number of rounds of the rejection algorithm and the number of bits transmitted in the initial phase. Finally, we apply remote sampling to the simulation of quantum entanglement in its essentially most general form possible, when an arbitrary finite number m of parties share systems of arbitrary finite dimensions on which they apply arbitrary measurements (not restricted to being projective measurements, but restricted to finitely many possible outcomes). In case the dimension of the systems and the number of possible outcomes per party are bounded by a constant, it suffices to communicate an expected O ( m 2 ) bits in order to simulate exactly the outcomes that these measurements would have produced on those systems.
机译:我们展示了如何精确采样离散概率分布,其定义参数分布在远程各方之间。为此,冯·诺依曼(von Neumann)的拒绝算法被转换为分布式采样通信协议。我们研究了各方之间通信的预期位数,并且还展示了拒绝算法的轮次与初始阶段中传输的位数之间的权衡。最后,当任意有限数量m的方共享任意有限尺寸的系统并对其应用任意测量(不限于投影测量,但受限制)时,我们将远程采样以其本质上最通用的形式应用于量子纠缠的模拟。有限的可能的结果)。如果系统的规模和每方可能获得的结果数量受一个常数限制,则只需传达一个预期的O(m 2)位即可,以精确模拟这些测量将在那些系统上产生的结果。

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