most citedOptical and microstructural characterization of Er doped epitaxial cerium oxide on silicon

1 citations · 2 across the 5 of their papers we have counts for

collaborators

6 papers

quant-ph2024

High-Q Cavity Interface for Color Centers in Thin Film Diamond

Sophie W. Ding, Michael Haas, Xinghan Guo +8

Quantum information technology offers the potential to realize unprecedented computational resources via secure channels capable of distributing entanglement between quantum comput…

cond-mat.mtrl-sci20231 cited

Optical and microstructural characterization of Er doped epitaxial cerium oxide on silicon

Gregory D. Grant, Jiefei Zhang, Ignas Masiulionis +15

Rare-earth ion dopants in solid-state hosts are ideal candidates for quantum communication technologies such as quantum memory, due to the intrinsic spin-photon interface of the ra…

cond-mat.mtrl-sci20231 cited

Nanocavity-mediated Purcell enhancement of Er in TiO thin films grown via atomic layer deposition

Cheng Ji, Michael T. Solomon, Gregory D. Grant +12

The use of trivalent erbium (Er), typically embedded as an atomic defect in the solid-state, has widespread adoption as a dopant in telecommunications devices and shows prom…

physics.app-ph2023

Quasi-deterministic Localization of Er Emitters in Thin Film TiO through Submicron-scale Crystalline Phase Control

Sean E. Sullivan, Jonghoon Ahn, Tao Zhou +5

With their shielded 4f orbitals, rare-earth ions (REIs) offer optical and electron spin transitions with good coherence properties even when embedded in a host crystal matrix, high…

quant-ph2023

Guiding Diamond Spin Qubit Growth with Computational Methods

Jonathan C. Marcks, Mykyta Onizhuk, Nazar Delegan +7

The nitrogen vacancy (NV) center in diamond, a well-studied, optically active spin defect, is the prototypical system in many state of the art quantum sensing and communication app…

quant-ph2023

Detecting spin bath polarization with quantum quench phase shifts of single spins in diamond

Paul C. Jerger, Yu-Xin Wang, Mykyta Onizhuk +7

Single-qubit sensing protocols can be used to measure qubit-bath coupling parameters. However, for sufficiently large coupling, the sensing protocol itself perturbs the bath, which…