activity
20132021
most citedLarge dynamic light-matter entanglement from driving neither too fast nor too slow

8 citations · 19 across the 5 of their papers we have counts for

collaborators

7 papers

cond-mat.mes-hall2021

Ladder of Loschmidt anomalies in the deep strong-coupling regime of a qubit-oscillator system

J. M. Betancourt, F. J. Rodríguez, L. Quiroga +1

We uncover a remarkably regular array of singularity-like structures within the deep strong-coupling limit of qubit-oscillator (e.g. light-matter) systems described by the quantum…

quant-ph2017★ 3 cited

Dynamics of Entanglement and the Schmidt Gap in a Driven Light-Matter System

F. J. Gómez-Ruiz, J. J. Mendoza-Arenas, O. L. Acevedo +3

The ability to modify light-matter coupling in time (e.g. using external pulses) opens up the exciting possibility of generating and probing new aspects of quantum correlations in…

physics.optics2016★ 2 cited

Exploiting non-trivial spatio-temporal correlations of thermal radiation for sunlight harvesting

Adriana M. De Mendoza, Felipe Caycedo-Soler, Pedro Manrique +3

The promise of any small improvement in the performance of light-harvesting devices, is sufficient to drive enormous experimental efforts. However these efforts are almost exclusiv…

cond-mat.mes-hall2015★ 6 cited

Entangled microwaves as a resource for entangling spatially separate solid-state qubits: superconducting qubits, NV centers and magnetic molecules

Angela Viviana Gómez, Ferney Javier Rodríguez, Luis Quiroga +1

Quantum correlations present in a broadband two-line squeezed microwave state can induce entanglement in a spatially separated bipartite system consisting of either two single qubi…

physics.bio-ph2015

Exploring the effects of photon correlations from thermal sources on bacterial photosynthesis

Pedro Manrique, Felipe Caycedo-Soler, Adriana De Mendoza +3

Thermal light sources can produce photons with strong spatial correlations. We study the role that these correlations might potentially play in bacterial photosynthesis. Our findin…

quant-ph2015★ 8 cited

Large dynamic light-matter entanglement from driving neither too fast nor too slow

O. L. Acevedo, L. Quiroga, F. J. Rodríguez +1

A significant problem facing next-generation quantum technologies is how to generate and manipulate macroscopic entanglement in light and matter systems. Here we report a new regim…