activity
20182024
most citedOptical repumping of resonantly excited quantum emitters in hexagonal boron nitride

17 citations · 17 across the 3 of their papers we have counts for

collaborators

7 papers

cond-mat.supr-con2024

Direct writing of high temperature superconducting Josephson junctions using a thermal scanning probe

Ngoc My Hanh Duong, Amanuel M. Berhane, Dave Mitchell +7

In this letter, we demonstrate for the first time the creation of Josephson-like superconducting nanojunctions using a thermal scanning probe to directly inscribe weak links into m…

physics.optics2020★ 17 cited

Optical repumping of resonantly excited quantum emitters in hexagonal boron nitride

Simon J. U. White, Ngoc My Hanh Duong, Alexander S. Solntsev +3

Resonant excitation of solid-state quantum emitters enables coherent control of quantum states and generation of coherent single photons, which are required for scalable quantum ph…

physics.app-ph2020

Large few-layer hexagonal boron nitride flakes for nonlinear optics

Nils Bernhardt, Sejeong Kim, Johannes E. Froch +7

Hexagonal boron nitride (hBN) is a layered dielectric material with a wide range of applications in optics and photonics. In this work, we demonstrate a fabrication method for few-…

physics.app-ph2020

Optical Thermometry with Quantum Emitters in Hexagonal Boron Nitride

Yongliang Chen, Thinh Ngoc Tran, Ngoc My Hanh Duong +6

Nanoscale optical thermometry is a promising non-contact route for measuring local temperature with both high sensitivity and spatial resolution. In this work, we present a determi…

physics.app-ph2019

Integrated on chip platform with quantum emitters in layered materials

Sejeong Kim, Ngoc My Hanh Duong, Minh Nguyen +7

Integrated quantum photonic circuitry is an emerging topic that requires efficient coupling of quantum light sources to waveguides and optical resonators. So far, great effort has…

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…