Exploring the Foundations of Quantum Mechanics: Recent Developments and Open Questions

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Arun Kumar

Abstract

The foundations of quantum mechanics have been a subject of intense investigation and debate since the theory's inception. Recent developments in quantum technologies and theoretical frameworks have shed new light on foundational issues and raised intriguing questions about the nature of reality at the quantum level. recent advancements in our understanding of the foundational principles of quantum mechanics and discuss unresolved questions that continue to challenge our conceptual framework. Topics of interest include the measurement problem, quantum entanglement, the role of contextuality and nonlocality, interpretations of quantum theory, and the quest for a unified theory of quantum gravity. findings and ongoing debates in the field, we aim to provide a comprehensive overview of the current state of research in the foundations of quantum mechanics and stimulate further discussion and inquiry into these fundamental questions.

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How to Cite
Kumar, A. (2024). Exploring the Foundations of Quantum Mechanics: Recent Developments and Open Questions. Journal of Quantum Science and Technology, 1(1), 20–24. https://doi.org/10.36676/jqst.v1.i1.05
Section
Original Research Articles

References

Bohr, N. (1935). Can quantum-mechanical description of physical reality be considered complete? Physical Review, 48(8), 696-702.

Bell, J. S. (1964). On the Einstein-Podolsky-Rosen paradox. Physics, 1(3), 195-200.

Everett III, H. (1957). Relative state formulation of quantum mechanics. Reviews of Modern Physics, 29(3), 454-462.

Ghirardi, G. C., Rimini, A., & Weber, T. (1986). Unified dynamics for microscopic and macroscopic systems. Physical Review D, 34(2), 470-491.

Aspect, A., Dalibard, J., & Roger, G. (1982). Experimental test of Bell's inequalities using time-varying analyzers. Physical Review Letters, 49(25), 1804-1807.

Mermin, N. D. (1990). Extreme quantum entanglement in a superposition of macroscopically distinct states. Physical Review Letters, 65(15), 1838-1840.

Shor, P. W. (1994). Algorithms for quantum computation: discrete logarithms and factoring. In Proceedings 35th Annual Symposium on Foundations of Computer Science (pp. 124-134). IEEE.

Ekert, A. K. (1991). Quantum cryptography based on Bell's theorem. Physical Review Letters, 67(6), 661-663.

Penrose, R. (1996). On gravity's role in quantum state reduction. General Relativity and Gravitation, 28(5), 581-600.

Deutsch, D., & Hayden, P. (2000). Information flow in entangled quantum systems. Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences, 456(1999), 1759-1774.

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