Open AccessPhysics

Yakir Aharonov, Eliahu Cohen, Eyal Gruss, Tomer Landsberger

2014.6.24Quantum Studies-Mathematics and Foundations

DOI: 10.1007/s40509-014-0011-9

Résumé

The notion of collapse is discussed and refined within the two-state vector formalism (TSVF). We show how a definite result of a measurement can be fully determined when considering specific forward- and backward-evolving quantum states. Moreover, we show how macroscopic time reversibility is attained, at the level of a single branch of the wavefunction, when several conditions regarding the final state and dynamics are met, a property for which we coin the term “classical robustness under time-reversal”. These entail a renewed perspective on the measurement problem, the Born rule and the many-worlds interpretation.

Format de citation

AHARONOV, Yakir, et al. Measurement and collapse within the two-state-vector formalism [preprint]. arXiv, 2014. arXiv:1406.6382.