Project Heads
Felix Binkowski, Sven Burger, Günter Kewes
Project Members
N.N.
Project Duration
01.01.2027 − 31.12.2028
Located at
ZIB
This project aims to develop models and numerical methods to compute quantum properties of dipole emitters and multi-emitter interactions; see Fig. 1. Capturing the influence of nanostructures on emission spectra, emission rates, and emission polarization states allows efficient simulation and optimization of quantum optical setups with potential application in quantum communication and quantum metrology.
External Website
Preliminary Work
Related Pictures
Fig.1. Resonance fluorescence: scattering of laser light by quantum dipole emitters. The quantum dipole emitters are modeled as tiny particles with tailored Drude-type material properties. Advanced numerical simulation tools yield the scattered light fields, from which quantum properties such as Purcell enhancement and Lamb shifts can be extracted.