EPR and Bell’s theorem, and quantum algorithms

I. Kenyon
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Abstract

EPR showed that quantum mechanics is not a local deterministic theory and on this account they argued that it is incomplete. Quantum mechanics predicts correlations over time-like separations. The suggested resolution in terms of local hidden variables is presented. Bell’s analysis leading to experimental tests is described. The experiment of Aspect, Grangier and Roger vindicating quantum mechanics is described. More refined experiments, avoiding conceivable biases, confirm this result. Then computing based on quantum principles is discussed. Bits with two states in a register would be replaced by qubits with values represented by points on the Bloch sphere. Basic gates are presented. Shor’s algorithm to decompose products of primes is described and a gate structure presented to implement it. Implementation would undermine current encryption methods. Quantum cryptography is described using the BB84 protocol. The no-cloning theorem protects this absolutely against attempts to intercept the encryption data.
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EPR和贝尔定理,还有量子算法
EPR表明,量子力学不是一个局部确定性理论,因此他们认为它是不完整的。量子力学预测了类时间分离的相关性。给出了基于局部隐变量的解决方法。描述了贝尔的分析导致实验测试。描述了Aspect、Grangier和Roger对量子力学的验证实验。更精细的实验,避免了可能的偏差,证实了这一结果。然后讨论了基于量子原理的计算。寄存器中具有两种状态的比特将被量子位取代,量子位的值由布洛赫球上的点表示。给出了基本门。描述了分解素数乘积的肖尔算法,并给出了实现该算法的门结构。实现将破坏当前的加密方法。量子密码学使用BB84协议进行描述。不可克隆定理绝对防止试图拦截加密数据。
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