虽然对NATURE量子机械的模拟进行模拟的第一个建议可以追溯到Richard Feynman 1,但最近尝试将量子化理论应用于高能物理系统研究的最新尝试已被证明是特别成功的。As a paradigmatic example quantum state tomography, a procedure that allows full re- construction of the density matrix of a system by perform- ing a complementary series of measurements on an ensem- ble of identical copies of the system under scrutiny 2 , is ide- ally applicable to colliders, where large numbers of events are generated 3–6 , and has been applied to numerical simulation studies of various high energy particle physics systems 4–7 。量子算法,包括量子机学习技术,是为了识别Standard模型和数据8-10中的签名,以及对撞机事件的更计算经济模拟11。这些结果验证了粒子物理和量子信息的两个领域之间的预期一致性(标准模型基于量子场理论,这是量子理论),但可以进一步利用这种联系背后的数学细节,从而导致对这两个领域的新见解。在本文中,我们确定了choi-jamiolkowski同构12或状态通道二重性,是一种理论原理,使量子信息理论在计算标准模型散射振幅的计算中系统地应用,并认为值得以下原因引起粒子物理社区的注意。
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