Colloidal quantum dots as platforms for quantum information science

CR Kagan, LC Bassett, CB Murray… - Chemical …, 2020 - ACS Publications
Colloidal quantum dots (QDs) are nanoscale semiconductor crystals with surface ligands
that enable their dispersion in solvents. Quantum confinement effects facilitate wave function …

Quantum nanophotonics with group IV defects in diamond

C Bradac, W Gao, J Forneris, ME Trusheim… - Nature …, 2019 - nature.com
Diamond photonics is an ever-growing field of research driven by the prospects of
harnessing diamond and its colour centres as suitable hardware for solid-state quantum …

Material platforms for spin-based photonic quantum technologies

M Atatüre, D Englund, N Vamivakas, SY Lee… - Nature Reviews …, 2018 - nature.com
A central goal in quantum optics and quantum information science is the development of
quantum networks to generate entanglement between distributed quantum memories …

Silicon-vacancy spin qubit in diamond: a quantum memory exceeding 10 ms with single-shot state readout

DD Sukachev, A Sipahigil, CT Nguyen, MK Bhaskar… - Physical review …, 2017 - APS
The negatively charged silicon-vacancy (SiV-) color center in diamond has recently
emerged as a promising system for quantum photonics. Its symmetry-protected optical …

Toward quantitative bio-sensing with nitrogen–vacancy center in diamond

T Zhang, G Pramanik, K Zhang, M Gulka, L Wang… - ACS …, 2021 - ACS Publications
The long-dreamed-of capability of monitoring the molecular machinery in living systems has
not been realized yet, mainly due to the technical limitations of current sensing technologies …

Tin-vacancy quantum emitters in diamond

T Iwasaki, Y Miyamoto, T Taniguchi, P Siyushev… - Physical review …, 2017 - APS
Tin-vacancy (Sn-V) color centers were created in diamond via ion implantation and
subsequent high-temperature annealing up to 2100° C at 7.7 GPa. The first-principles …

An integrated diamond nanophotonics platform for quantum-optical networks

A Sipahigil, RE Evans, DD Sukachev, MJ Burek… - Science, 2016 - science.org
Efficient interfaces between photons and quantum emitters form the basis for quantum
networks and enable optical nonlinearities at the single-photon level. We demonstrate an …

[HTML][HTML] High-fidelity spin and optical control of single silicon-vacancy centres in silicon carbide

R Nagy, M Niethammer, M Widmann, YC Chen… - Nature …, 2019 - nature.com
Scalable quantum networking requires quantum systems with quantum processing
capabilities. Solid state spin systems with reliable spin–optical interfaces are a leading …

An integrated nanophotonic quantum register based on silicon-vacancy spins in diamond

CT Nguyen, DD Sukachev, MK Bhaskar, B Machielse… - Physical Review B, 2019 - APS
We realize an elementary quantum network node consisting of a silicon-vacancy (SiV) color
center inside a diamond nanocavity coupled to a nearby nuclear spin with 100-ms-long …

Quantum control of the tin-vacancy spin qubit in diamond

R Debroux, CP Michaels, CM Purser, N Wan… - Physical Review X, 2021 - APS
Group-IV color centers in diamond are a promising light-matter interface for quantum
networking devices. The negatively charged tin-vacancy center (Sn V) is particularly …