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Brian LeRoy
Associate Department Head, Physics | Professor, Physics | Member of the Graduate Faculty
Physics
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Research Area
nanotechnology,
graphene,
materials science,
material science,
heterostructures,
optoelectronics,
2d materials,
semiconductors,
nanomaterials,
quantum dots,
quantum computing,
surface science,
spectroscopy,
electronics,
electron-phonon interactions,
physics,
materials,
engineering,
hexagonal boron nitride,
carbon nanotubes,
electronic structure,
correlated states,
microscopy,
photonics
Grants
(24)
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Publications
(68)
Recent
Ultra-broadband bright light emission from a one-dimensional inorganic van der Waals material
2024
nanomaterials,
optoelectronics,
materials science,
nanotechnology,
photonic devices
Atomically Precise Graphene Nanoribbon Transistors with Long-Term Stability and Reliability
2024
nanotechnology,
semiconductor,
materials science,
electronics,
nanoelectronics
The impact of boron doping in the tunneling magnetoresistance of Heusler alloy Co2FeAl
2023
magnetoresistance,
boron doping,
heusler alloy,
tunneling,
impact
Direct STM Measurements of R- and H-type Twisted MoSe2/WSe2 Heterostructures
2022
stm measurements,
twisted heterostructures,
mose2-wse2,
r-type twisting,
h-type twisting
Interlayer exciton diode and transistor
2022
semiconductor devices,
optoelectronics,
nanotechnology,
electronic materials,
energy conversion
Phonon Lifetimes in Boron‐Isotope‐Enriched Graphene‐Hexagonal Boron Nitride Devices
2022
phonon lifetimes,
boron-isotope-enriched,
graphene,
hexagonal boron nitride,
devices
Localized interlayer excitons in MoSe2–WSe2 heterostructures without a moiré potential
2022
heterostructures,
interlayer excitons,
mose2,
wse2,
localized excitons
Single-exciton trapping in an electrostatically defined two-dimensional semiconductor quantum dot
2022
quantum dots,
semiconductor physics,
nanotechnology,
electrostatics,
optoelectronics
Nanoscale Trapping of Interlayer Excitons in a 2D Semiconductor Heterostructure.
2021
nanotechnology,
semiconductor physics,
exciton dynamics,
heterostructures,
quantum confinement
Role of defects and phonons in bandgadynamics of monolayer WS2 at high carrier densities
2020
2d materials,
defects,
phonons,
bandgap dynamics,
high carrier densities
Collaborations
(24)
Hao Zhang
Mutual work: 2 Proposals
Collaboration Details
Robert Norwood
Mutual work: 1 Proposal﹒1 Grant
Collaboration Details
Krishna Muralidharan
Mutual work: 1 Proposal
Collaboration Details
John Schaibley
Mutual work: 27 Proposals﹒2 Publications﹒12 Grants
Collaboration Details
Peter Reiners
Mutual work: 1 Proposal
Collaboration Details
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News
(3)
Playing Pool with Carbon Atoms
2014
Microprocessors From Pencil Lead
2012
Probing Atomic Chicken Wire
2011
Courses
(5)
Honors Introductory Mechanics
Introductory Mechanics
Introductory Physics I
Introductory Optics and Thermodynamics
Mathematical Techniques in Physics
20+ Collaborators
$4.7M / $7.5M Funding
20+ Grants
60+ Publications
4+ Courses