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20242026
most citedEntanglement, loss, and quantumness: When balanced beam splitters are best

2 citations · 5 across the 5 of their papers we have counts for

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quant-ph20262 cited

Entanglement, loss, and quantumness: When balanced beam splitters are best

Noah Lupu-Gladstein, Anaelle Hertz, Khabat Heshami +1

The paper proves that beam splitters with equal transmission and reflection (balanced) generate the maximum entanglement for states interfered with vacuum under common entanglement…

quant-ph20262 cited

Information gain and measurement disturbance for quantum agents

Arthur O. T. Pang, Noah Lupu-Gladstein, Y. Batuhan Yilmaz +4

The traditional formalism of quantum measurement (hereafter ``TQM'') describes processes where some properties of quantum states are extracted and stored as classical information.…

quant-ph2026

Compressing Quantum Fisher Information

Rui Jie Tang, Jeremy Guenza Marcus, Noah Lupu-Gladstein +5

We show that the quantum Fisher information about any phase parameter encoded in a family of pure quantum states can be faithfully compressed into a single qubit, accompanied by a…

quant-ph2025

Quantum enhanced beam tracking surpassing the Heisenberg uncertainty limit

Yingwen Zhang, Duncan England, Noah Lupu-Gladstein +5

Determining a beam's full trajectory requires tracking both its position and momentum (angular) information. However, the product of position and momentum uncertainty in a simultan…

quant-ph2025

Equalities and inequalities from entanglement, loss, and beam splitters

Anaelle Hertz, Noah Lupu-Gladstein, Khabat Heshami +1

Quantum optics bridges esoteric notions of entanglement and superposition with practical applications like metrology and communication. Throughout, there is an interplay between in…

quant-ph2024

Variable-strength non-local measurements reveal quantum violations of classical counting principles

Noah Lupu-Gladstein, Ou Teen Arthur Pang, Hugo Ferretti +4

We implement a variant of the quantum pigeonhole paradox thought experiment to study whether classical counting principles survive in the quantum domain. We observe strong measurem…