collaborators

5 papers

quant-ph2026

Attaining Fundamental Limits of Multiparameter Incoherent Optical Imaging Using Joint-Detection Quantum Measurements

Nico Deshler, Aakash Warke, Michael R. Grace +2

Resolving extended incoherent objects below the diffraction limit poses an application-rich imaging challenge whose solution may enable a new generation of observational instrument…

physics.optics2026

Fundamental Limit for One versus Two Point Sources Detection using Direct Imaging

Parth Hemant Darekar, Amit Kumar Jha, Michael R. Grace +2

We consider the task of distinguishing between a single weak incoherent optical point source and two weak incoherent optical point sources located symmetrically about the first sou…

quant-ph2026

Passive optical superresolution at the quantum limit

A. I. Lvovsky, Michael R. Grace, Saikat Guha +3

For more than a century, the diffraction limit has defined the resolution achievable by passive optical imaging systems. Although some resolution improvement can be gained through…

physics.optics2026

Programmable pixel-mode linear interferometers using multi-plane light conversion

Mushkan Sureka, Itay Ozer, Wenhua He +3

Programmable linear optical interferometers are a core primitive in optical signal processing, quantum information processing, and photonic computing. Existing photonic-integrated…

physics.optics2024

Adaptive Super-Resolution Imaging Without Prior Knowledge Using a Programmable Spatial-Mode Sorter

Itay Ozer, Michael. R. Grace, Pierre-Alexandre Blanche +1

We consider an imaging system tasked with estimating the angular distance between two incoherently-emitting, identically bright, sub-Rayleigh-separated point sources, without any p…