most citedSimultaneously giant enhancement of Forster resonance energy transfer rate and efficiency based on plasmonic excitations

39 citations · 62 across the 5 of their papers we have counts for

collaborators

5 papers

physics.optics2017

Competition of Chiroptical Effect Caused by Nanostructure and Chiral Molecules

Tong Wu, Jun Ren, Rongyao Wang +1

The theory to calculate circular dichroism (CD) of chiral molecules in a finite cluster with arbitrarily disposed objects has been developed by means of T-matrix method. The intera…

physics.optics201739 cited

Simultaneously giant enhancement of Forster resonance energy transfer rate and efficiency based on plasmonic excitations

Jun Ren, Tong Wu, Bing Yang +1

We present a first-principles calculation on the rate and efficiency of Förster resonance energy transfer (FRET) from a donor to an acceptor when they are located in the hotspots o…

quant-ph2017

Multifrequency multi-qubit entanglement based on plasmonic hot spots

Jun Ren, Tong Wu, Xiangdong Zhang

The theoretical method to study strong coupling between an ensemble of quantum emitters (QEs) and surface plasmons excited by the nanoparticle cluster has been presented by using a…

physics.optics201712 cited

Ultrafast coherent energy transfer with high efficiency based on plasmonic nanostructures

Jun Ren, Tian Chen, Bo Wang +1

The theory of energy transfer dynamics of a pair of donor and acceptor molecules located in the plasmonic hot spots is developed by means of the master equation approach and the el…

physics.optics201511 cited

Multi-qubit quantum phase gates based on surface plasmons of a nanosphere

Jun Ren, Jun Yuan, Xiangdong Zhang

The Dicke subradiance and superradiance resulting from the interaction between surface plasmons of a nanosphere and an ensemble of quantum emitters have been investigated using a G…