Counterfactual quantum measurements
arXiv:2510.01888 · doi:10.1103/9836-q2q3
Abstract
Counterfactual reasoning plays a crucial role in exploring hypothetical scenarios, by comparing some consequent under conditions identical except as results from a differing antecedent. David Lewis' well-known analysis evaluates counterfactuals using a hierarchy of desiderata. These were, however, built upon a deterministic classical framework, and whether it could be generalized to indeterministic quantum theory has been an open question. In this paper, we propose a formalism for quantum counterfactuals in which antecedents are measurement settings. Unlike other approaches, it non-trivially answers questions like: "Given that a photon-detector, observing an atom's fluorescence, clicked at a certain time, what would a field-quadrature detector have measured, if it had been used instead?"
5+2 pages, 3 figures, Supplemental material included. Comments welcomed
References in corpus (12)
- Quantum Machine Learning
- The lesson of causal discovery algorithms for quantum correlations: Causal explanations of Bell-inequality violations require fine-tuning
- Towards a Formulation of Quantum Theory as a Causally Neutral Theory of Bayesian Inference
- Quantum causal modelling
- Quantum Trajectories and Quantum Measurement Theory
- Quantum common causes and quantum causal models
- Information-Theoretic Implications of Quantum Causal Structures
- Past quantum states
- Quantum non-locality - It ain't necessarily so...
- Quantum State Smoothing
- A Note on Bell's Theorem Logical Consistency
- Unifying theory of quantum state estimation using past and future information