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quant-ph2024

Self-ordering, cooling, and lasing in an ensemble of clock atoms

Anna Bychek, Laurin Ostermann, Helmut Ritsch

Active atomic clocks are predicted to provide far better short-term stability and robustness against thermal fluctuations than typical feedback-based optical atomic clocks. However…

quant-ph2024

Symmetry based efficient simulation of dissipative quantum many-body dynamics in subwavelength quantum emitter arrays

Raphael Holzinger, Oriol Rubies-Bigorda, Susanne F. Yelin +1

We propose an efficient method to numerically simulate the dissipative dynamics of large numbers of quantum emitters in ordered arrays in the presence of long-range dipole-dipole i…

physics.optics2024

Efficient excitation transfer in an LH2-inspired nanoscale stacked ring geometry

Arpita Pal, Raphael Holzinger, Maria Moreno-Cardoner +1

Subwavelength ring-shaped structures of quantum emitters exhibit outstanding radiation properties and are useful for antennas, excitation transport, and storage. Taking inspiration…

quant-ph2024

Subradiance and Superradiant Long Range Excitation Transport among Quantum Emitter Ensembles in a Waveguide

Martin Fasser, Laurin Ostermann, Helmut Ritsch +1

In contrast to free space, in waveguides the dispersive and dissipative dipole-dipole interactions among quantum emitters exhibit a periodic behavior over remarkably long distances…

quant-ph2024

Harnessing quantum emitter rings for efficient energy transport and trapping

Raphael Holzinger, Jonah Peter, Stefan Ostermann +2

Efficient transport and harvesting of excitation energy under low light conditions is an important process in nature and quantum technologies alike. Here we formulate a quantum opt…