activity
20182020
most citedMicrowave Package Design for Superconducting Quantum Processors

71 citations · 71 across the 3 of their papers we have counts for

collaborators

6 papers

quant-ph202071 cited

Microwave Package Design for Superconducting Quantum Processors

Sihao Huang, Benjamin Lienhard, Greg Calusine +10

Solid-state qubits with transition frequencies in the microwave regime, such as superconducting qubits, are at the forefront of quantum information processing. However, high-fideli…

physics.app-ph2020

Bright high-purity quantum emitters in aluminium nitride integrated photonics

Tsung-Ju Lu, Benjamin Lienhard, Kwang-Yong Jeong +4

Solid-state quantum emitters (QEs) are fundamental in photonic-based quantum information processing. There is strong interest to develop high-quality QEs in III-nitride semiconduct…

quant-ph2019

Microwave Packaging for Superconducting Qubits

Benjamin Lienhard, Jochen Braumüller, Wayne Woods +8

Over the past two decades, the performance of superconducting quantum circuits has tremendously improved. The progress of superconducting qubits enabled a new industry branch to em…

physics.app-ph2018

Top-down fabrication of high-uniformity nanodiamonds by self-assembled block copolymer masks

Jiabao Zheng, Benjamin Lienhard, Gregory Doerk +8

Nanodiamonds hosting colour centres are a promising material platform for various quantum technologies. The fabrication of non-aggregated and uniformly-sized nanodiamonds with syst…

quant-ph2018

Transform-limited photons from a coherent tin-vacancy spin in diamond

Matthew E. Trusheim, Benjamin Pingault, Noel H Wan +21

Solid-state quantum emitters that couple coherent optical transitions to long-lived spin qubits are essential for quantum networks. Here we report on the spin and optical propertie…

quant-ph2018

Lead-Related Quantum Emitters in Diamond

Matthew E. Trusheim, Noel H. Wan, Kevin C. Chen +9

We report on quantum emission from Pb-related color centers in diamond following ion implantation and high temperature vacuum annealing. First-principles calculations predict a neg…