English

The wave-function is real but nonphysical: A view from counterfactual quantum cryptography

Quantum Physics 2014-07-08 v2

Abstract

Counterfactual quantum cryptography (CQC) is used here as a tool to assess the status of the quantum state: Is it real/ontic (an objective state of Nature) or epistemic (a state of the observer's knowledge)? In contrast to recent approaches to wave function ontology, that are based on realist models of quantum theory, here we recast the question as a problem of communication between a sender (Bob), who uses interaction-free measurements, and a receiver (Alice), who observes an interference pattern in a Mach-Zehnder set-up. An advantage of our approach is that it allows us to define the concept of "physical", apart from "real". In instances of counterfactual quantum communication, reality is ascribed to the interaction-freely measured wave function (ψ\psi) because Alice deterministically infers Bob's measurement. On the other hand, ψ\psi does not correspond to the physical transmission of a particle because it produced no detection on Bob's apparatus. We therefore conclude that the wave function in this case (and by extension, generally) is real, but not physical. Characteristically for classical phenomena, the reality and physicality of objects are equivalent, whereas for quantum phenomena, the former is strictly weaker. As a concrete application of this idea, the nonphysical reality of the wavefunction is shown to be the basic nonclassical phenomenon that underlies the security of CQC.

Keywords

Cite

@article{arxiv.1311.7127,
  title  = {The wave-function is real but nonphysical: A view from counterfactual quantum cryptography},
  author = {Akshata Shenoy H. and R. Srikanth},
  journal= {arXiv preprint arXiv:1311.7127},
  year   = {2014}
}

Comments

6 pages; 3 figures; new references added

R2 v1 2026-06-22T02:16:24.152Z