activity
20052009
most citedHigh Quality factor photonic crystal nanobeam cavities

513 citations · 573 across the 6 of their papers we have counts for

collaborators

7 papers

physics.optics20095 cited

Dynamically Reconfigurable Photonic Crystal Nanobeam Cavities

Ian W. Frank, Parag B. Deotare, Murray W. McCutcheon +1

Wavelength-scale, high Q-factor photonic crystal cavities have emerged as a platform of choice for on-chip manipulation of optical signals, with applications ranging from low-power…

physics.optics2009

Coupled photonic crystal nanobeam cavities

Parag B. Deotare, Murray W. McCutcheon, Ian W. Frank +2

We describe the design, fabrication, and spectroscopy of coupled, high Quality (Q) factor silicon nanobeam photonic crystal cavities. We show that the single nanobeam cavity modes…

quant-ph20099 cited

Broad-band spectral control of single photon sources using a nonlinear photonic crystal cavity

Murray W. McCutcheon, Darrick E. Chang, Yinan Zhang +2

Motivated by developments in quantum information science, much recent effort has been directed toward coupling individual quantum emitters to optical microcavities. Such systems ca…

physics.optics200933 cited

Sub-micron diameter micropillar cavities with high Quality factors and ultra-small mode volumes

Yinan Zhang, Marko Loncar

We theoretically demonstrate high Quality factor micropillar cavities with record low mode volumes based on the TiO2/SiO2 material system. The proposed cavities have Q/V three orde…

physics.optics2009513 cited

High Quality factor photonic crystal nanobeam cavities

Parag B. Deotare, Murray W. McCutcheon, Ian W. Frank +2

We investigate the design, fabrication and experimental characterization of high Quality factor photonic crystal nanobeam cavities in silicon. Using a five-hole tapered 1D photonic…

physics.optics200813 cited

Design of an ultrahigh Quality factor silicon nitride photonic crystal nanocavity for coupling to diamond nanocrystals

Murray W. McCutcheon, Marko Loncar

A photonic crystal nanocavity with a Quality (Q) factor of 2.3 x 10^5, a mode volume of 0.55()^3, and an operating wavelength of 637 nm is designed in a silicon nitride (SiN_x…