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20172026
most citedDiamond Integrated Quantum Photonics: A Review

78 citations · 97 across the 10 of their papers we have counts for

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physics.optics2024★ 2 cited

Optical Switching of in Diamond Photonics

Sigurd Flågan, Joe Itoi, Prasoon K. Shandilya +4

Diamond's unique physical properties make it a versatile material for a wide range of nonlinear and quantum photonic technologies. However, unlocking diamond's full potential as a…

physics.optics2023

Feedback Enhanced Phonon Lasing of a Microwave Frequency Resonator

Peyman Parsa, Prasoon Kumar Shandilya, David P. Lake +2

The amplitude of self-oscillating mechanical resonators in cavity optomechanical systems is typically limited by nonlinearities arising from the cavity's finite optical bandwidth.…

physics.optics2023

Kerr-optomechanical spectroscopy of multimode diamond resonators

Parisa Behjat, Peyman Parsa, Natalia C. Carvalho +2

Diamond microdisk cavities play a key role in optomechanical and spin-optomechanical technologies. Previous optomechanical studies of these devices have focused exclusively on thei…

physics.optics2023★ 4 cited

Semiconductor-on-diamond cavities for spin optomechanics

Xinyuan Ma, Prasoon K. Shandilya, Paul E. Barclay

Optomechanical cavities are powerful tools for classical and quantum information processing that can be realized using nanophotonic structures that co-localize optical and mechanic…

physics.optics2021

Demonstration of hybrid high-Q hexagonal boron nitride microresonators

Anustup Das, Dong Jun Lee, Prasoon K. Shandilya +9

Hexagonal boron nitride (hBN) is a wide bandgap van der Waals material that is emerging as a powerful platform for quantum optics and nanophotonics. In this work, we demonstrate wh…

physics.optics2018

Hexagonal boron nitride cavity optomechanics

Prasoon K. Shandilya, Johannes E. Fröch, Matthew Mitchell +7

Hexagonal boron nitride (hBN) is an emerging layered material that plays a key role in a variety of two-dimensional devices, and has potential applications in nanophotonics and nan…