activity
20242026
collaborators

12 papers

quant-ph2026

Scalable Photon-Mediated Two-Qubit Gates with Spectrally Noisy Quantum Emitters

Shreekanth S. Yuvarajan, W. A. Coish, David Hucul +1

When two quantum bits are coupled through a cavity, a two-qubit gate can be realized between them either in the near-resonant regime over a timescale established by the coupling st…

quant-ph2026

Spectral Diffusion Mitigation with a Laser Pulse Sequence

Kilian Unterguggenberger, Alok Gokhale, Aleksei Tsarapkin +6

The optical spectrum of a quantum system is jointly determined by the properties of the emitter and the driving field. All-optical spectral control can hence be a promising method…

quant-ph2026

Dynamics of Many-Emitter Ensembles: Probing Cooperative Evolution with Scalable Quantum Circuits

Vincent Iglesias-Cardinale, Shreekanth S. Yuvarajan, Herbert F. Fotso

Many-particle quantum systems often give rise to exotic behaviors in their nonequilibrium dynamics that are rather challenging to reveal with analytical methods or with classical c…

cond-mat.str-el2026

Disorder-Assisted Adiabaticity in Correlated Many-Particle Systems

Shang-Jie Liou, Herbert F. Fotso

We investigate how disorder affects adiabaticity in an interacting quantum system by assessing its effect on the state of the system after an interaction modulation, or interaction…

quant-ph2025

Cavity Mediated Two-Qubit Gate: Tuning to Optimal Performance with NISQ Era Quantum Simulations

Shreekanth S. Yuvarajan, Vincent Iglesias-Cardinale, David Hucul +1

A variety of photon-mediated operations are critical to the realization of scalable quantum information processing platforms and their accurate characterization is essential for th…

physics.optics2025

Tunable absorption spectrum splitting in a pulse-driven three-level system

Jiawei Wang, Anthony Gullo, Kavya Velmurugan +1

When a two-level system is driven on resonance by a strong incident field, its emission spectrum is characterized by the well-known Mollow triplet. If the absorption from the excit…