activity
20102016
most citedFundamental limitations to gain enhancement in periodic media and waveguides

55 citations · 158 across the 5 of their papers we have counts for

collaborators

6 papers

quant-ph2016★ 18 cited

Dispersion relations for stationary light in one-dimensional atomic ensembles

Ivan Iakoupov, Johan R. Ott, Darrick E. Chang +1

We investigate the dispersion relations for light coupled to one-dimensional ensembles of atoms with different level schemes. The unifying feature of all the considered setups is t…

cond-mat.mes-hall2014

An On-Demand Single-Electron Time-Bin Qubit Source

J. R. Ott, M. Moskalets

We propose a source capable of on-demand emission of single electrons with a wave packet of controllable shape and phase. The source consists of a hybrid quantum system, relying on…

physics.atom-ph2013★ 39 cited

Cooperative Fluorescence from a Strongly Driven Dilute Cloud of Atoms

J. R. Ott, M. Wubs, P. Lodahl +2

We investigate cooperative fluorescence in a dilute cloud of strongly driven two-level emitters. Starting from the Heisenberg equations of motion, we compute the first-order scatte…

physics.optics2012★ 55 cited

Fundamental limitations to gain enhancement in periodic media and waveguides

Jure Grgić, Johan Raunkjær Ott, Fengwen Wang +4

A common strategy to compensate for losses in optical nanostructures is to add gain material in the system. By exploiting slow-light effects it is expected that the gain may be enh…

physics.optics2011

Continuous-wave spatial quantum correlations of light induced by multiple scattering

Stephan Smolka, Johan R. Ott, Alexander Huck +2

We present theoretical and experimental results on spatial quantum correlations induced by multiple scattering of nonclassical light. A continuous mode quantum theory is derived th…

quant-ph2010★ 46 cited

Quantum interference and entanglement induced by multiple scattering of light

J. R. Ott, N. A. Mortensen, P. Lodahl

We report on the effects of quantum interference induced by transmission of an arbitrary number of optical quantum states through a multiple scattering medium. We identify the role…