activity
20182021
collaborators

7 papers

physics.optics2021

Nanofabrication of high Q, transferable, diamond resonators

Blake Regan, Aleksandra Trycz, Johannes E. Fröch +3

Advancement of diamond based photonic circuitry requires robust fabrication protocols of key components, including diamond resonators and cavities. Here, we present 1D (nanobeam) p…

physics.optics2019

Photonic devices fabricated from (111) oriented single crystal diamond

Blake Regan, Sejeong Kim, Anh Tu Huy Ly +5

Diamond is a material of choice in the pursuit of integrated quantum photonic technologies. So far, the majority of photonic devices fabricated from diamond, are made from (100)-or…

physics.app-ph2018

A Diamond-Photonics Platform Based on Silicon-Vacancy Centers in a Single Crystal Diamond Membrane and a Fiber-Cavity

Stefan Häußler, Julia Benedikter, Kerem Bray +6

We realize a potential platform for an efficient spin-photon interface, namely negatively-charged silicon-vacancy centers in a diamond membrane coupled to the mode of a fully-tunab…

physics.app-ph2018

Anti-Stokes excitation of solid-state quantum emitters for nanoscale thermometry

Toan Trong Tran, Blake Regan, Evgeny A. Ekimov +8

Color centers in solids are the fundamental constituents of a plethora of applications such as lasers, light emitting diodes and sensors, as well as the foundation of advanced quan…

physics.optics2018

A random laser based on diamond nanoneedles

Ngoc My Hanh Duong, Blake Regan, Milos Toth +2

Random lasers use radiative gain and multiple scatterers in disordered media to generate light amplification. In this study, we demonstrate a random laser based on diamond nanoneed…

physics.app-ph2018

Bottom up engineering of near-identical quantum emitters in atomically thin materials

Noah Mendelson, Zai-Quan Xu, Toan Trong Tran +9

Quantum technologies require robust and photostable single photon emitters (SPEs) that can be reliably engineered. Hexagonal boron nitride (hBN) has recently emerged as a promising…