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A proof that measured data and equations of quantum mechanics can be linked only by guesswork

机译:证明测量数据和量子力学方程只能通过猜测才能链接的证明

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摘要

The design and operation of a quantum-mechanical device as a laboratory instrument puts models written in equations of quantum mechanics in contact with instruments. This contact is recordable in files of a Classical Digital Process-control Computer (CPC) used both to calculate with the equations and to manage the instruments. By noticing that equations and instruments make contact in a CPC, we rewrite equations of quantum mechanics to explicitly include functions of CPC-commands to the instruments. This sets up a proof that a scientist's choice in linking mathematical models to instruments is unresolvable without guesswork to narrow the set of models from which one is to be chosen. As for implications of the proof, scientists inherit choices from the past and frame choices for the future, choices open to guesswork and visible in CPC files. To picture these choices, we adapt colored Petri nets, and the availability of these net fragments makes choice and guesswork part and parcel of physics. Net fragments as a means of expressing guess-demanding choices are applied to portray guesswork needed in testing and calibrating a quantum computer. The sample size required to test a quantum gate in a quantum computer is shown to grow as the inverse square of the error allowed in implementing the gate.
机译:量子力学设备作为实验室仪器的设计和操作使以量子力学方程编写的模型与仪器接触。这种联系方式可记录在古典数字过程控制计算机(CPC)的文件中,该计算机既可用于计算方程式,又可用于管理仪器。通过注意到方程和仪器在CPC中建立联系,我们重写了量子力学方程,以明确将CPC命令的功能包括到仪器中。这证明了科学家在将数学模型与仪器联系起来时的选择是无法解决的,而无需进行猜测就能缩小要从中选择模型的范围。至于证据的含义,科学家继承了过去的选择,并为将来确定了选择,这些选择易于猜测,并在CPC文件中可见。为了描述这些选择,我们采用了有色Petri网,这些网碎片的可用性使选择和猜测成为物理的一部分。网络片段作为表达猜测选择的一种手段,可用于描述测试和校准量子计算机所需的猜测工作。在量子计算机中测试量子门所需的样本量显示为实现门所允许的误差的反平方。

著录项

  • 作者

    Myers, J M; Madjid, F H;

  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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