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Born rule
Observations of Wavefunction Collapse and the Retrospective Application of the Born Rule
Derivation of the Born Rule from Many-Worlds Interpretation and Probability Theory K
Quantum Trajectory Distribution for Weak Measurement of A
Quantum Theory: Exact Or Approximate?
What Is Quantum Mechanics? a Minimal Formulation Pierre Hohenberg, NYU (In Collaboration with R
Quantum Trajectories for Measurement of Entangled States
Understanding the Born Rule in Weak Measurements
Quantum Gravity in Timeless Configuration Space
Probability Distributions and Gleason's Theorem
Quantum Mechanics Not in Jeopardy: Physicists Confirm Decades-Old Key Principle Experimentally 22 July 2010
Supercomputer Simulations of Transmon Quantum Computers Quantum Simulations of Transmon Supercomputer
Born's Rule and Measurement
Ruling out Multi-Order Interference in Quantum Mechanics
Extensions of Born's Rule to Non-Linear Quantum Mechanics, Some of Which
On the Nature of the Born Rule
A Simple Proof of Born's Rule for Statistical Interpretation of Quantum
Is Quantum Mechanics Exact?
Quantum Probability Assignment Limited by Relativistic Causality Yeong Deok Han1 & Taeseung Choi2,3
Top View
Arxiv:0909.2359V3
Updating the Born Rule Fabio Costa and Sally Shrapnel - Causal and Causally Separable Processes to Cite This Article: Sally Shrapnel Et Al 2018 New J
Consciousness and the Collapse of the Wave Function
Path Integral Implementation of Relational Quantum Mechanics Jianhao M
A Generic Model for Quantum Measurements
Is the Past Determined?
Cauchy–Born Rule and the Stability of Crystalline Solids: Static Problems
Bell Experiment
De Broglie-Bohm and Feynman Path Integrals Marius Oltean University of Waterloo
[email protected]
Spin½ 'Plane' & Simple Abstract: to Fully Characterize Any Spin Requires Identification of Its Spin Vector and Its Plane of Rotation
Emergence of the Born Rule in Quantum Optics
What Could You Do with a Quantum Computer?
Consciousness and the Collapse of the Wave Function∗
Arxiv:Quant-Ph/0604178V1 24 Apr 2006
The Measurement Postulates of Quantum Mechanics Are Operationally Redundant
Von Neumann Versus Jordan on the Foundations of Quantum Theory
Gleason's Theorem Why Does Quantum Mechanics Use Hilbe
Born Rule and Algorithmic Randomness
Operational Derivation of the Born Rule
Probabilities for Quantum Histories I. the Born Rule References: CQT = R
Foundations of Quantum Physics I. a Critique of the Tradition
On Two Recent Approaches to the Born Rule Arxiv:2103.09910V1
Quantum Meaning
Alistair I. M. Rae Statement and Readings
Many-Particle Interference to Test Born's Rule
Learning Using the Born Rule
De Broglie-Bohm Theory: a Hidden Variables Approach to Quantum Mechanics
Quantum Annealing
Joint Quantum-State and Measurement Tomography with Incomplete Measurements
The Measurement Problem and Some Mild Solutions
Derivations of the Born Rule
Multi-Path Interferometry Using Single Photons
Quantum and Classical Fluctuations
The Born Rule and Its Interpretation
An Evolutionary Formalism for Weak Quantum Measurements
Derivation of the Born Rule from Many-Worlds Interpretation and Probability Theory
Derivation of the Probability Law in the Many-Worlds, One-MIND Interpretation
Von Neumann Versus Jordan on the Foundations of Quantum Theory*
Quantum Theory Is Incompatible with Relativity: a New Proof Beyond Bell's
Chapter 26 Derivations of the Born Rule
Derivations of the Born Rule
Quantum Trajectories of a Superconducting Qubit
Making Sense of Born's Rule P = 2 with the Many-Worlds Interpretation
The Gauge Principle from the Schrodinger-Born Wave Mechanics
Superposition Principle and Born's Rule in the Probability
Gudder's Theorem and the Born Rule
Quantum Theory and Functional Analysis
Born Rule in Quantum and Classical Mechanics
The Born Rule and Time-Reversal Symmetry of Quantum Equations of Motion