Pankul Dhingra

Pankul Dhingra

University of Illinois at Urbana-Champaign

H-index: 10

North America-United States

About Pankul Dhingra

Pankul Dhingra, With an exceptional h-index of 10 and a recent h-index of 10 (since 2020), a distinguished researcher at University of Illinois at Urbana-Champaign, specializes in the field of Semiconductors, III-V, quantum dots, solar cells, lasers.

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

Effect of Threading Dislocations on GaInP Front-and Rear-Junction Solar Cells Grown on Si

Low-threshold visible InP quantum dot and InGaP quantum well lasers grown by molecular beam epitaxy

Design, defect reduction, and dislocation tolerance of red lasers on Si (001)

lasers grown on GaAs by metal-organic chemical vapor deposition

Visible Light-Emitting Device and Laser with Improved Tolerance to Crystalline Defects and Damage

∼ 8.5 μm-emitting InP-based quantum cascade lasers grown on GaAs by metal-organic chemical vapor deposition

Comparison of 1.9 eV InGaP front-and rear-junction solar cells grown on Si

Reducing the dependence of threading dislocation density on doping for GaAsP/GaP on Si

Pankul Dhingra Information

University

Position

Department of Electrical and Computer Engineering

Citations(all)

306

Citations(since 2020)

259

Cited By

121

hIndex(all)

10

hIndex(since 2020)

10

i10Index(all)

10

i10Index(since 2020)

10

Email

University Profile Page

University of Illinois at Urbana-Champaign

Google Scholar

View Google Scholar Profile

Pankul Dhingra Skills & Research Interests

Semiconductors

III-V

quantum dots

solar cells

lasers

Top articles of Pankul Dhingra

Title

Journal

Author(s)

Publication Date

Effect of Threading Dislocations on GaInP Front-and Rear-Junction Solar Cells Grown on Si

IEEE Journal of Photovoltaics

Brian Li

Pankul Dhingra

Ryan D Hool

Shizhao Fan

Minjoo Larry Lee

2024/4/17

Low-threshold visible InP quantum dot and InGaP quantum well lasers grown by molecular beam epitaxy

Journal of Applied Physics

Pankul Dhingra

Aaron J Muhowski

Brian D Li

Yukun Sun

Ryan D Hool

...

2023/3/14

Design, defect reduction, and dislocation tolerance of red lasers on Si (001)

Pankul Dhingra

2022/4/22

lasers grown on GaAs by metal-organic chemical vapor deposition

S Xu

S Zhang

JD Kirch

S Suri

N Pokharel

...

2022

Visible Light-Emitting Device and Laser with Improved Tolerance to Crystalline Defects and Damage

2022/11/24

∼ 8.5 μm-emitting InP-based quantum cascade lasers grown on GaAs by metal-organic chemical vapor deposition

Applied Physics Letters

S Xu

S Zhang

JD Kirch

S Suri

N Pokharel

...

2022/10/24

Comparison of 1.9 eV InGaP front-and rear-junction solar cells grown on Si

Brian D Li

Pankul Dhingra

Ryan D Hool

Shizhao Fan

Minjoo Larry Lee

2021/6/20

Reducing the dependence of threading dislocation density on doping for GaAsP/GaP on Si

Ryan D Hool

Brian D Li

Yukun Sun

Pankul Dhingra

Rachel W Tham

...

2021/6/20

Challenges of relaxed n-type GaP on Si and strategies to enable low threading dislocation density

Journal of Applied Physics

Ryan D Hool

Yukun Sun

Brian D Li

Pankul Dhingra

Rachel W Tham

...

2021/12/28

Graded buffer Bragg reflectors with high reflectivity and transparency for metamorphic optoelectronics

Journal of Applied Physics

Ryan M France

Jeronimo Buencuerpo

Mikayla Bradsby

John F Geisz

Yukun Sun

...

2021/5/7

Low-threshold InP quantum dot and InGaP quantum well visible lasers on silicon (001)

Optica

Pankul Dhingra

Patrick Su

Brian D Li

Ryan D Hool

Aaron J Muhowski

...

2021/11/20

Structure of light

Pankul Dhingra

2021

Efficient Optical Coupling between III-V Semiconductor and SiNx Waveguides via Heteroepitaxial Integration

Christopher Heidelberger

Cheryl Sorace-Agaskar

Jason J Plant

Dave Kharas

Reuel B Swint

...

2021/10/18

2.0–2.2 eV AlGaInP solar cells grown by molecular beam epitaxy

Solar Energy Materials and Solar Cells

Yukun Sun

Shizhao Fan

Joseph Faucher

Ryan D Hool

Brian D Li

...

2021/1/1

Relaxed GaP on Si with low threading dislocation density

Applied Physics Letters

Ryan D Hool

Yuji Chai

Yukun Sun

Brendan C Eng

Pankul Dhingra

...

2020/1/27

InP quantum dots for dislocation-tolerant, visible light emitters on Si

Applied Physics Letters

Pankul Dhingra

Shizhao Fan

Yukun Sun

Ryan D Hool

Brendan Eng

...

2020/11/2

Enhanced room temperature infrared LEDs using monolithically integrated plasmonic materials

Optica

Andrew F Briggs

Leland Nordin

Aaron J Muhowski

Evan Simmons

Pankul Dhingra

...

2020/10/20

Current-matched III–V/Si epitaxial tandem solar cells with 25.0% efficiency

Cell reports physical science

Shizhao Fan

J Yu Zhengshan

Ryan D Hool

Pankul Dhingra

William Weigand

...

2020/9/23

Effects of graded buffer design and active region structure on GaAsP single-junction solar cells grown on GaP/Si templates

Shizhao Fan

Ryan D Hool

Pankul Dhingra

Mijung Kim

Erik D Ratta

...

2020/6/15

Epitaxial GaAsP/Si solar cells with high quantum efficiency

Shizhao Fan

J Yu Zhengshan

Ryan D Hool

Pankul Dhingra

William Weigand

...

2020/6/15

See List of Professors in Pankul Dhingra University(University of Illinois at Urbana-Champaign)