Bohr's complementarity

Fuente: arXiv
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Autori principali: Starke, Diego S., Maziero, Jonas, Basso, Marcos L. W., Qureshi, Tabish
Natura: Preprint
Pubblicazione: 2026
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author Starke, Diego S.
Maziero, Jonas
Basso, Marcos L. W.
Qureshi, Tabish
author_facet Starke, Diego S.
Maziero, Jonas
Basso, Marcos L. W.
Qureshi, Tabish
contents Quantum complementarity is a fundamental feature of quantum systems and has captivated the physics research community for nearly a century, with significant advancements emerging in recent decades. This review traces the historical evolution of the concept of complementarity, beginning with Bohr's original formulation. It then explores its modern quantification through complementarity relations and its profound connection to the foundational postulates of quantum theory. Furthermore, it delves into key related developments, such as the operational definition of complementarity in the context of incompatible observables, its potential links with quantum uncertainty relations and contextuality, its various applications, and other pertinent topics. This review aims to serve physicists interested in quantum resources, quantum correlations, and the foundational principles of quantum mechanics.
format Preprint
id arxiv_https___arxiv_org_abs_2605_26375
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Bohr's complementarity
Starke, Diego S.
Maziero, Jonas
Basso, Marcos L. W.
Qureshi, Tabish
Quantum Physics
Quantum complementarity is a fundamental feature of quantum systems and has captivated the physics research community for nearly a century, with significant advancements emerging in recent decades. This review traces the historical evolution of the concept of complementarity, beginning with Bohr's original formulation. It then explores its modern quantification through complementarity relations and its profound connection to the foundational postulates of quantum theory. Furthermore, it delves into key related developments, such as the operational definition of complementarity in the context of incompatible observables, its potential links with quantum uncertainty relations and contextuality, its various applications, and other pertinent topics. This review aims to serve physicists interested in quantum resources, quantum correlations, and the foundational principles of quantum mechanics.
title Bohr's complementarity
topic Quantum Physics
url https://arxiv.org/abs/2605.26375