复杂系统的量子力学性质对日本先进技术应用的影响

Naoko Yamada
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引用次数: 0

摘要

目的:研究复杂系统的量子力学特性对日本先进技术应用的影响。材料与方法:本研究采用桌面方法学。案头研究指的是二手数据或不需要实地调查就能收集到的数据。案头调查基本上涉及从现有资源中收集数据,因此,与实地调查相比,案头调查通常被认为是一种低成本的技术,因为主要费用包括行政人员的时间、电话费和通讯录。因此,这项研究依赖于已经发表的研究、报告和统计数据。这些二手数据很容易通过在线期刊和图书馆获得。结果:通过文献综述和研究发现,日本复杂系统的量子力学特性对各种技术应用具有重要影响。该研究表明,量子纠缠、量子相干和量子干涉可以用于量子计算、量子通信、量子传感、量子密码、量子计量和其他先进技术。该研究还讨论了在技术应用中利用量子力学特性的挑战和局限性,如退相干、环境相互作用和技术可行性。本研究为理解复杂系统的量子力学特性对日本先进技术应用的影响提供了独特的贡献。该研究促进了量子信息科学、量子技术以及量子力学与技术的交叉研究。这些发现为量子力学特性在各种技术领域的潜在应用及其对理论、实践和政策的影响提供了见解。该研究对日本及其他国家从事量子技术研发的研究人员、工程师、政策制定者和行业具有实际意义,指导了量子技术创新和政策制定的未来方向
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Quantum Mechanical Properties of Complex Systems on Advanced Technological Applications in Japan
Purpose: This study investigates the effects of quantum mechanical properties of complex systems on advanced technological applications in Japan. Materials and Methods: The study adopted a desktop methodology. Desk research refers to secondary data or that which can be collected without fieldwork. Desk research is basically involved in collecting data from existing resources hence it is often considered a low-cost technique as compared to field research, as the main cost is involved in executive’s time, telephone charges and directories. Thus, the study relied on already published studies, reports and statistics. This secondary data was easily accessed through the online journals and library. Results: The literature review and research findings highlight the significant effects of quantum mechanical properties of complex systems on various technological applications in Japan. The study reveals that quantum entanglement, quantum coherence, and quantum interference can be exploited for quantum computing, quantum communication, quantum sensing, quantum cryptography, quantum metrology, and other advanced technologies. The study also discusses the challenges and limitations of utilizing quantum mechanical properties in technological applications, such as decoherence, environmental interactions, and technical feasibility. Recommendations: This study offers a unique contribution to understanding the effects of quantum mechanical properties of complex systems on advanced technological applications in Japan. The research advances the knowledge in the field of quantum information science, quantum technology, and interdisciplinary research between quantum mechanics and technology. The findings provide insights into the potential applications of quantum mechanical properties in various technological fields, and their implications for theory, practice, and policy. The study has practical implications for researchers, engineers, policymakers, and industries involved in quantum technology research and development in Japan and beyond, guiding the future direction of quantum technology innovation and policy formulation  
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