most citedIntegrated quantum photonics with silicon carbide: challenges and prospects

220 citations · 372 across the 2 of their papers we have counts for

collaborators

7 papers

quant-ph2020220 cited

Integrated quantum photonics with silicon carbide: challenges and prospects

Daniil M. Lukin, Melissa A. Guidry, Jelena Vučković

Optically-addressable solid-state spin defects are promising candidates for storing and manipulating quantum information using their long coherence ground state manifold; individua…

physics.optics2020152 cited

Optical parametric oscillation in silicon carbide nanophotonics

Melissa A. Guidry, Ki Youl Yang, Daniil M. Lukin +4

Silicon carbide (SiC) is rapidly emerging as a leading platform for the implementation of nonlinear and quantum photonics. Here, we find that commercial SiC, which hosts a variety…

quant-ph2020

Spectrally reconfigurable quantum emitters enabled by optimized fast modulation

Daniil M. Lukin, Alexander D. White, Rahul Trivedi +16

The ability to shape photon emission facilitates strong photon-mediated interactions between disparate physical systems, thereby enabling applications in quantum information proces…

quant-ph2020

Vibronic states and their effect on the temperature and strain dependence of silicon-vacancy qubits in 4H silicon carbide

Péter Udvarhelyi, Gergő Thiering, Naoya Morioka +9

Silicon-vacancy qubits in silicon carbide (SiC) are emerging tools in quantum technology applications due to their excellent optical and spin properties. In this paper, we explore…

physics.app-ph2018

Inverse-Designed Diamond Photonics

Constantin Dory, Dries Vercruysse, Ki Youl Yang +10

Diamond hosts optically active color centers with great promise in quantum computation, networking, and sensing. Realization of such applications is contingent upon the integration…

quant-ph2018

Pulsed coherent drive in the Jaynes--Cummings model

Kevin Fischer, Shuo Sun, Daniil Lukin +3

The Jaynes--Cummings system is one of the most fundamental models of how light and matter interact. When driving the system with a coherent state (e.g. laser light), it is often as…