The Grammar of Teleportation

The Grammar of Teleportation
复制标题

传送的语法

DOI:
10.1093/bjps/axl016
复制
发表时间:
2005
期刊:
The British Journal for the Philosophy of Science
影响因子:
--
通讯作者:
C. Timpson
C. Timpson
中科院分区:
--
文献类型:
--
作者:
C. Timpson

文献摘要

被引文献

相似文献

虽然这是非相对论量子力学形式主义的直接结果,但量子隐形传态现象引起了相当大的困惑。本文对隐形传态协议进行了综述,解开了这些困惑。我们认为它们主要来自两个来源:(1)人们熟悉的将抽象名词(在这种情况下是‘信息’)作后置的错误;(2)未能区分依赖于解释的解释和量子力学的解释无关特征。还确定了误差的一个辅助来源--模拟谬误。隐形传态难题的解决说明了适当关注作为抽象名词的信息的逻辑地位所带来的好处。1.引言2.引言量子隐形传态协议2.1隐形传态的一些信息论方面2.1.1先导2.1.2应用于隐形传态3.传送的谜题4。解决(化解)问题4.1模拟谬误5.不同解释下的隐形传态过程5.1折叠解释:狄拉克/冯·诺伊曼,GRW 5.2没有坍塌和没有额外的值:埃弗雷特5.3没有坍塌,但有额外的值:玻姆5.3.1a关于活跃信息的注释5.4集合和统计观点6。结束语介绍量子隐形传态协议2.1隐形传态的一些信息论方面2.1.1前导2.1.2隐形传态的一些信息论方面2.1.1前导2.1.2隐形传态的一些信息论方面的应用隐形传态2.1.1前导2.1.2应用于隐形传态解决(溶解)问题4.1模拟谬误4.1不同解释下的隐形传态过程5.1错位解释:Dirac/von Neumann,grw 5.2无坍塌和无附加值:Everett 5.3无塌陷,但附加值:Bohm 5.3.1a关于活动信息的注释5.4集合和统计观点5.1折叠解释:Dirac/von Neumann,Grw 5.2没有折叠,没有额外的值:Everett 5.3没有折叠,但有额外的值:Bohm 5.3.1a关于活动信息的注释5.3.1a关于活动信息的注释5.4集合和统计观点总结备注
Whilst a straightforward consequence of the formalism of non-relativistic quantum mechanics, the phenomenon of quantum teleportation has given rise to considerable puzzlement. In this paper, the teleportation protocol is reviewed and these puzzles dispelled. It is suggested that they arise from two primary sources: (1) the familiar error of hypostatizing an abstract noun (in this case, ‘information’) and (2) failure to differentiate interpretation dependent from interpretation independent features of quantum mechanics. A subsidiary source of error, the simulation fallacy, is also identified. The resolution presented of the puzzles of teleportation illustrates the benefits of paying due attention to the logical status of ‘information’ as an abstract noun. 1. Introduction2. The quantum teleportation protocol 2.1Some information-theoretic aspects of teleportation 2.1.1Preamble 2.1.2Application to teleportation3. The puzzles of teleportation4. Resolving (dissolving) the problem 4.1The simulation fallacy5. The teleportation process under different interpretations 5.1Collapse interpretations:Dirac/von Neumann, GRW 5.2No collapse and no extra values: Everett 5.3No collapse, but extra values: Bohm 5.3.1A note on active information 5.4Ensemble and statistical viewpoints6. Concluding remarks Introduction The quantum teleportation protocol 2.1Some information-theoretic aspects of teleportation 2.1.1Preamble 2.1.2Application to teleportation 2.1Some information-theoretic aspects of teleportation 2.1.1Preamble 2.1.2Application to teleportation 2.1.1Preamble 2.1.2Application to teleportation The puzzles of teleportation Resolving (dissolving) the problem 4.1The simulation fallacy 4.1The simulation fallacy The teleportation process under different interpretations 5.1Collapse interpretations:Dirac/von Neumann, GRW 5.2No collapse and no extra values: Everett 5.3No collapse, but extra values: Bohm 5.3.1A note on active information 5.4Ensemble and statistical viewpoints 5.1Collapse interpretations:Dirac/von Neumann, GRW 5.2No collapse and no extra values: Everett 5.3No collapse, but extra values: Bohm 5.3.1A note on active information 5.3.1A note on active information 5.4Ensemble and statistical viewpoints Concluding remarks