Stephen A Church

Stephen A Church

Manchester University

H-index: 7

North America-United States

About Stephen A Church

Stephen A Church, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at Manchester University, specializes in the field of High-throughput characterisation, semiconductor nanostructures.

His recent articles reflect a diverse array of research interests and contributions to the field:

Robust Measurement of Nanowire Laser Performance Across 6 Designs using Experimental Big-Data

Sub‐Picosecond Carrier Dynamics Explored using Automated High‐Throughput Studies of Doping Inhomogeneity within a Bayesian Framework

Bottom-up, chip-scale engineering of low threshold, multi-quantum-well microring lasers

Holistic nanowire laser characterization as a route to optimal design

Improving quantum well tube homogeneity using strained nanowire heterostructures

Disentangling Gain, Distributed Losses and End-Facet Losses in Freestanding Nanowire Lasers using Automated High-Throughput Micro-Spectroscopy

Holistic Determination of Optoelectronic Properties using High-Throughput Spectroscopy of Surface-Guided CsPbBr3 Nanowires

Characterization of buried interfaces using Ga Kα hard X-ray photoelectron spectroscopy (HAXPES)

Stephen A Church Information

University

Position

Postdoctoral research associate

Citations(all)

104

Citations(since 2020)

97

Cited By

31

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

4

i10Index(since 2020)

4

Email

University Profile Page

Google Scholar

Stephen A Church Skills & Research Interests

High-throughput characterisation

semiconductor nanostructures

Top articles of Stephen A Church

Robust Measurement of Nanowire Laser Performance Across 6 Designs using Experimental Big-Data

2023/10/22

Sub‐Picosecond Carrier Dynamics Explored using Automated High‐Throughput Studies of Doping Inhomogeneity within a Bayesian Framework

Small

2023/8

Bottom-up, chip-scale engineering of low threshold, multi-quantum-well microring lasers

ACS nano

2023/7/14

Holistic nanowire laser characterization as a route to optimal design

Advanced Optical Materials

2023/4

Improving quantum well tube homogeneity using strained nanowire heterostructures

ACS applied materials & interfaces

2023/2/13

Disentangling Gain, Distributed Losses and End-Facet Losses in Freestanding Nanowire Lasers using Automated High-Throughput Micro-Spectroscopy

2022/7/24

Holistic Determination of Optoelectronic Properties using High-Throughput Spectroscopy of Surface-Guided CsPbBr3 Nanowires

ACS nano

2022/5/18

Characterization of buried interfaces using Ga Kα hard X-ray photoelectron spectroscopy (HAXPES)

Faraday Discussions

2022

Polarised Emission from Quantum Wires in Cubic GaN

2022/11/17

Selective Area Epitaxy of InP/InAsP Multi-Quantum Well Micro-Ring Lasers

2022/11/13

Optical characterisation of nanowire lasers

2022/8/1

Effect of Si-doped InGaN underlayers on photoluminescence efficiency and recombination dynamics in InGaN/GaN quantum wells

Journal of Physics D: Applied Physics

2021/9/10

The effect of thermal annealing on the optical properties of Mg-doped zincblende GaN epilayers

Journal of Applied Physics

2021/8/28

Photoluminescence efficiency of zincblende InGaN/GaN quantum wells

Journal of Applied Physics

2021/5/7

Effect of micron-scale photoluminescence variation on droop measurements in InGaN/GaN quantum wells

Journal of Physics: Conference Series

2021/5/1

Stacking fault-associated polarized surface-emitted photoluminescence from zincblende InGaN/GaN quantum wells

Applied Physics Letters

2020/7/20

See List of Professors in Stephen A Church University(Manchester University)