2025/10/30 by Lin Htoo Zaw, Anonymous, Zaw, Lin Htoo +8 · 1 voice · 2 citations
Computer Science · Physics and Astronomy · #Gaussian #Multipartite #Multipartite entanglement #Phase (matter) #Quantum Electrodynamics and Casimir Effect #Quantum Information and Cryptography #Quantum Mechanics and Applications #Quantum entanglement #Space (punctuation) #quant-ph
paper · pdf · doi:10.1103/3sm6-744g
published in Physical Review A 114(1) (American Physical Society)
arxiv published 2025/10/30 · openalex publication_date 2026/06/25 · openalex created_date 2026/06/26 · arxiv updated 2026/07/24 · openalex updated_date 2026/07/29
Many existing genuine multipartite entanglement (GME) witnesses for continuous-variable (CV) quantum systems typically rely on quadrature measurements, which are challenging to implement in platforms where the CV degrees of freedom can be indirectly accessed only through qubit readouts. In this work, we propose methods to implement GME witnesses through phase-space measurements in state-of-the-art experimental platforms, leveraging controlled Gaussian unitaries readily available in qubit-CV architectures. Based on two theoretical results showing that sufficient Wigner negativity can certify GME, we present five concrete implementation schemes using controlled parity, displacement, and beam-splitter operations. Our witnesses can detect paradigmatic GME states like the Dicke and multipartite N00N states, which include the W states as a special case, and GHZ-type entangled cat states. We analyze the performance of these witnesses under realistic noise conditions and finite measurement resolution, showing their robustness to experimental imperfections. Crucially, our implementations require exponentially fewer measurement settings than full tomography, with one scheme requiring only a single measurement on auxiliary modes. The methods are readily applicable to circuit/cavity quantum electrodynamics, circuit quantum acoustodynamics, as well as trapped ions and atomic systems, where such dichotomic phase-space measurements are already routinely performed as native readouts.