Treating interrogation time as a nuisance parameter in quantum gravimetry retains an affine-over-Lorentzian fraction of the single-parameter gravity QFI, with explicit suppression conditions derived for Gaussian free-fall and Kasevich-Chu interferometer benchmarks.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
fields
quant-ph 2verdicts
UNVERDICTED 2representative citing papers
Develops reference-frame-independent nonlinear quantum metrology using local unitary invariants and randomized local measurements on multiple copies, deriving analytical precision scaling for two-body interaction Hamiltonians like one-axis twisting.
citing papers explorer
-
Quantum gravimetry with intrinsic quantum time uncertainty
Treating interrogation time as a nuisance parameter in quantum gravimetry retains an affine-over-Lorentzian fraction of the single-parameter gravity QFI, with explicit suppression conditions derived for Gaussian free-fall and Kasevich-Chu interferometer benchmarks.
-
Reference-frame-independent quantum metrology
Develops reference-frame-independent nonlinear quantum metrology using local unitary invariants and randomized local measurements on multiple copies, deriving analytical precision scaling for two-body interaction Hamiltonians like one-axis twisting.