English

When the Weak Becomes Strong: Effective Observables via Time-Symmetric Quantum Selection

Quantum Physics 2025-07-15 v1 Computational Engineering, Finance, and Science

Abstract

We investigate the sequential composition of weak values in the framework of time-symmetric quantum mechanics. Specifically, we consider a forward'' weak measurement from a preselected state ψ\ket{\psi} to a post-selected state ϕ\ket{\phi}, followed by a reverse'' weak measurement. We show that the product of these two weak values corresponds to the normalized expectation value of a strong, state-conditioned observable B=APψAB = A P_\psi A, where Pψ=ψψP_\psi = \ket{\psi}\bra{\psi} is the projector onto the preselected state. Analyzing the structure of BB, we demonstrate how it encodes interference information, particularly when ψ\ket{\psi} is a superposition rather than an eigenstate of AA. This formulation extends naturally to mixed states by replacing PψP_\psi with a generic density matrix ρ\rho, linking the construction to the formalism of generalized quantum measurements. We illustrate practical applications in quantum information, including state-specific error witnessing in quantum computing, and show how the phase of a weak value can be inferred via strong measurements in the pure-state case.

Keywords

Cite

@article{arxiv.2507.09716,
  title  = {When the Weak Becomes Strong: Effective Observables via Time-Symmetric Quantum Selection},
  author = {Mirco A. Mannucci},
  journal= {arXiv preprint arXiv:2507.09716},
  year   = {2025}
}

Comments

11 pages, 2 figures

R2 v1 2026-07-01T03:58:45.062Z