activity
20192026
most citedBiphoton entanglement of topologically-distinct modes

29 citations · 41 across the 12 of their papers we have counts for

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Showing physics.opticsShow all

15 papers · 1 filter

physics.optics2026

Diagonalizing an optical coherence matrix via on-chip Stokes tomography

Amin Hashemi, Abbas Shiri, Bahaa E. A. Saleh +2

Structured coherence -- partially coherent light spanned by a finite number of modes -- is emerging as a powerful tool in optical communications, computation, cryptography, and spe…

physics.optics2026

On-chip measurement of the modal Stokes-Gell-Mann parameters for partially coherent three-mode light

Amin Hashemi, Abbas Shiri, Bahaa E. A. Saleh +2

The Stokes parameters are three real parameters that completely characterize partially coherent optical fields spanned by two modes -- whether a pair of polarization or spatial mod…

physics.optics20261 cited

Incoherence-assisted mode excitation in non-Hermitian resonant systems

Amin Hashemi, Vinzenz Zimmermann, Armando Perez-Leija +1

We introduce and experimentally demonstrate an approach for selective mode excitation in non-Hermitian resonant systems using incoherent light. This method eliminates the need for…

physics.optics20262 cited

On-chip control of the coherence matrix of four-mode partially coherent light: rank, entropy, and modal Stokes parameters

Amin Hashemi, Abbas Shiri, Bahaa E. A. Saleh +2

Partially coherent light offers salutary capabilities in optical information processing that cannot be matched by coherent light. To date, this `coherence advantage' has been confi…

physics.optics20262 cited

Programmable on-chip synthesis and reconstruction of partially coherent two-mode optical fields

Amin Hashemi, Abbas Shiri, Bahaa E. A. Saleh +2

Partially coherent light is typically studied in the context of freely propagating continuous fields. Recent developments have indicated the existence of a `coherence advantage' in…

physics.optics2025

Non-Hermitian topological filters

Vinzenz Zimmermann, Amin Hashemi, Kurt Busch +2

We introduce a non-Hermitian photonic filter that harnesses dissipation to selectively isolate a desired topological state. In science and engineering, dissipation is often used to…