REVIEW 4 cited by
Probabilities from Entanglement, Born's Rule from Envariance
Not yet reviewed by Pith; the record is open.
This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.
SPECIMEN: schema-true, not a live event
T0 review · schema-true
One-sentence machine reading of the paper's core claim.
pith:XXXXXXXX · record.json · timestamp
abstract
I show how probabilities arise in quantum physics by exploring implications of {\it environment - assisted invariance} or {\it envariance}, a recently discovered symmetry exhibited by entangled quantum systems. Envariance of perfectly entangled ``Bell-like'' states can be used to rigorously justify complete ignorance of the observer about the outcome of any measurement on either of the members of the entangled pair. For more general states, envariance leads to Born's rule, $p_k \propto |\psi_k|^2$ for the outcomes associated with Schmidt states. Probabilities derived in this manner are an objective reflection of the underlying state of the system -- they represent experimentally verifiable symmetries, and not just a subjective ``state of knowledge'' of the observer. Envariance - based approach is compared with and found superior to pre-quantum definitions of probability including the {\it standard definition} based on the `principle of indifference' due to Laplace, and the {\it relative frequency approach} advocated by von Mises. Implications of envariance for the interpretation of quantum theory go beyond the derivation of Born's rule: Envariance is enough to establish dynamical independence of preferred branches of the evolving state vector of the composite system, and, thus, to arrive at the {\it environment - induced superselection (einselection) of pointer states}, that was usually derived by an appeal to decoherence. Envariant origin of Born's rule for probabilities sheds a new light on the relation between ignorance (and hence, information) and the nature of quantum states.
Forward citations
Cited by 4 Pith papers
-
Entanglement groups for mixed states
For mixed quantum states, entanglement can be characterized by a quotient group of local unitary stabilizers of the density matrix, and any nontriviality for separable states must come from multipartite entanglement w...
-
Against Many Worlds
The Many Worlds interpretation cannot derive or justify the Born rule, because all possible routes — axiomatic, deductive, or inductive — face fundamental obstructions.
-
A Finite-Lattice Model from a Reciprocal Cost Action: Spectral and Reflection-Positivity Properties
Rigorous analysis shows the continuous noncompact model with kernel exp[−(cosh u−1)] fails Bochner positive-definiteness while finite-alphabet discretizations satisfy reflection positivity via uniform diagonal-dominan...
-
Relational Quantum Dynamics (RQD): An Informational Ontology
RQD claims that observer-relative facts, emergent time, entanglement-built space, integrated information, and decoherence together dissolve quantum paradoxes, but it offers no formal derivation.
Discussion (0). Continue with ORCID to comment.