首页> 外国专利> Quantum entity state processing system and method having heterogeneously influenceable quantum entity secondary states and conditioned quantum entity tertiary states

Quantum entity state processing system and method having heterogeneously influenceable quantum entity secondary states and conditioned quantum entity tertiary states

机译:具有异构影响的量子实体二级状态和条件量子实体第三级状态的量子实体状态处理系统和方法

摘要

Systems and methods are described for processing quantum entity states by utilizing interference phenomena, and more specifically self-interference outcomes. The quantum entity states are embodiable in fermions and/or bosons, expressly including photons. Certain embodiments can utilize input quantum entity states that encompass one or more separable quantum entities and can be arranged to produce predictable outcome differences that are alterable in accordance with differences and/or similarities between separate input quantum entities. Additional outcome alterations are effectible via static and/or dynamic quantum entity state influencing constituents. Even further outcome alterations are effectible by associative quantum state influencing constituents that are additionally utilizable for interrelating separable embodiments. Interrelations of separable embodiments are achievable as well by employing at least a portion of at least a first outcome quantum entity state as an intermediary or a final interactor with at least a portion of a differing separable embodiments' quantum entity state.
机译:描述了用于通过利用干扰现象,更具体地是自干扰结果来处理量子实体状态的系统和方法。量子实体状态在费米子和/或玻色子中是可体现的,明确包括光子。某些实施例可以利用包含一个或多个可分离的量子实体的输入量子实体状态,并且可以被布置为产生可预测的结果差异,该可预测的结果差异可以根据分离的输入量子实体之间的差异和/或相似性而改变。通过影响量子的静态和/或动态量子实体状态,可以实现其他结果更改。通过关联量子态影响成分甚至可以进一步进行结果改变,所述关联量子态影响成分另外可用于相互关联的可分离实施例。通过采用至少第一结果量子实体状态的至少一部分作为中间的或最终的相互作用体以及具有至少不同的可分离实施例的量子实体状态的至少一部分,也可以实现可分离实施例的相互关系。

著录项

  • 公开/公告号US8350211B2

    专利类型

  • 公开/公告日2013-01-08

    原文格式PDF

  • 申请/专利权人 DANIEL S. KLOTZER;

    申请/专利号US20100655792

  • 发明设计人 DANIEL S. KLOTZER;

    申请日2010-01-06

  • 分类号G01J4/00;

  • 国家 US

  • 入库时间 2022-08-21 16:42:46

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