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From the 1 of 8 linked papers with an AI index.

most citedInformation gain and measurement disturbance for quantum agents

2 citations · 2 across the 6 of their papers we have counts for

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8 papers

physics.optics2026

Sub-Rayleigh Imaging of Unequal-Intensity Sources: Near-Quantum-Limit Multiparameter Estimation

Y. Batuhan Yilmaz, Kent A. G. Bonsma-Fisher, Muhammad Mohid +3

In optical imaging, diffraction strongly degrades the performance of conventional intensity-based estimation once the separation between two sources is below the Rayleigh-Abbe limi…

quant-ph2026

Spin coherence scale: operator-ordering sensitivity beyond the Heisenberg-Weyl group

Aaron Z. Goldberg, Andre J. Rodrigues, Y. Batuhan Yilmaz +2

The paper defines a spin coherence scale to quantify quantum coherence in spin systems, extending the quadrature coherence scale to SU(2)-invariant settings and linking it to noncl…

quant-ph2026

Experimental quantum state learning with pairs of photons

C. Pria Dobney, Johan Henaff, Allen Kasum +5

Tomography allows one to estimate the density matrix describing the state an ensemble of quantum systems are prepared in (for example, polarization tomography determines the polari…

quant-ph2026

Improved delta-kick cooling with multiple nonideal kicks

Harshil Neeraj, David C. Spierings, Joseph McGowan +2

Delta-kick cooling is a technique employed to achieve low kinetic temperatures by decreasing momentum width at the cost of increased position width. In an ideal implementation, thi…

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

Single Photon Cross-Phase Shifts Can Be Enhanced by Localization in both Frequency and Time

Xinyu Jiao, Vida-Michelle Nixon, Kyle Thompson +1

Single-photon optical nonlinearities face a fundamental trade-off: maximum nonlinearity requires both spectral resonance (narrow bandwidth) and high peak intensity (short duration)…