From the 1 of 22 linked papers with an AI index.
2 citations · 3 across the 4 of their papers we have counts for
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Microstructural and preliminary optical and microwave characterization of erbium doped CaMoO thin films
Ignas Masiulionis, Bonnie Y. X. Lin, Sagar Kumar Seth +10
This work explores erbium-doped calcium molybdate (CaMoO) thin films grown on silicon and yttria stabilized zirconia (YSZ) substrates, as a potential solid state system for C-b…
Spin decoherence dynamics of Er in CeO film
Sagar Kumar Seth, Jonah Nagura, Vrindaa Somjit +10
Developing telecom-compatible spin-photon interfaces is essential towards scalable quantum networks. Erbium ions (Er) exhibit a unique combination of a telecom (1.5 m) o…
First-Principles Framework for the Prediction of Intersystem Crossing Rates in Spin Defects: The Role of Electron Correlation
Yu Jin, Jinsoo Park, Marquis M. McMillan +9
Optically active spin defects in solids are promising platforms for quantum technologies. Here, we present a first-principles framework to investigate intersystem crossing processe…
High-throughput spin-bath characterization of spin-defects in semiconductors
Abigail N. Poteshman, Mykyta Onizhuk, Christopher Egerstrom +4
Detailed knowledge of the local environments of spin-defects in semiconductors, such as nitrogen vacancy (NV) centers in diamond or divacancies in silicon carbide, is crucial for o…
Emergent anisotropic three-phase order in critically doped superconducting diamond films
Jyotirmay Dwivedi, Jake Morris, Saurav Islam +10
Two decades since its discovery, superconducting heavily boron-doped diamond (HBDD) still presents unresolved fundamental questions whose resolution is relevant to the development…
A high-resolution molecular spin-photon interface at telecommunications wavelengths
Leah R. Weiss, Grant T. Smith, Ryan A. Murphy +7
Optically addressable electronic spins in polyatomic molecules are a promising platform for quantum information science with the potential to enable scalable qubit design and integ…