activity
20182022
collaborators

6 papers

quant-ph2022

Enhancing Spin Coherence in Optically Addressable Molecular Qubits through Host-Matrix Control

S. L. Bayliss, P. Deb, D. W. Laorenza +4

Optically addressable spins are a promising platform for quantum information science due to their combination of a long-lived qubit with a spin-optical interface for external qubit…

quant-ph2020

Optically addressable molecular spins for quantum information processing

S. L. Bayliss, D. W. Laorenza, P. J. Mintun +3

Spin-bearing molecules are promising building blocks for quantum technologies as they can be chemically tuned, assembled into scalable arrays, and readily incorporated into diverse…

quant-ph2020

Purcell enhancement of a single silicon carbide color center with coherent spin control

A. L. Crook, C. P. Anderson, K. C. Miao +9

Silicon carbide has recently been developed as a platform for optically addressable spin defects. In particular, the neutral divacancy in the 4H polytype displays an optically addr…

cond-mat.mtrl-sci2019

Spin fine-structure reveals bi-exciton geometry in an organic semiconductor

K. M. Yunusova, S. L. Bayliss, T. Chanelière +4

In organic semiconductors, bi-excitons are key intermediates in carrier-multiplication and exciton annihilation. Their local geometry governs their electronic properties and yet ha…

quant-ph2019

Electrically driven optical interferometry with spins in silicon carbide

Kevin C. Miao, Alexandre Bourassa, Christopher P. Anderson +11

Interfacing solid-state defect electron spins to other quantum systems is an ongoing challenge. The ground-state spin's weak coupling to its environment bestows excellent coherence…

physics.chem-ph2018

Site-selective measurement of coupled spin pairs in an organic semiconductor

Sam L. Bayliss, Leah R. Weiss, Anatol Mitioglu +14

From organic electronics to biological systems, understanding the role of intermolecular interactions between spin pairs is a key challenge. Here we show how such pairs can be sele…