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Joe C Campbell

University Of Dayton

$2,197,476
Attributed
$6,365,720
Total exposure
12
Grants
3
Lead (contact PI)

Attributed= this PI's even-split share of every grant they're on (the fair, additive number). Exposure = full size of all those grants.

Funding over time

peak $1.8M · FY200525
$2M$1.5M$1M$500K$0
'05
'06
'07
'08
'09
'10
'11
'12
'13
'14
'15
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'17
'18
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'20
'21
'22
'23
'24
'25

Funding mix

By agency

NSF$6,365,720 · 12

By mechanism

$6,365,720 · 12

Top collaborators

Grant awards (12)

Quantum Photodetectors$425,000
· FY2025 · ENG · contact PI
OP: Enhancing detectivity of avalanche photodiodes by engineering correlated noise$479,925
· FY2024 · ENG
Band Engineering for High Gain Digital III-V Avalanche Photodiodes$500,000
· FY2019 · ENG
RAISE: TAQS: On-Chip Entanglement, Preparation, Manipulation, and Detection for Integrated All Quantum Information Processing$1,024,000
· FY2018 · CSE
RAISE-EQuIP: Quantum mux/demux: the quantum optical frequency comb as a scalable quantum encoding resource$758,000
· FY2018 · ENG
Phase I Site Addition: I/UCRC for Multi-Functional Integrated System Technology (MIST) Center$633,135
· FY2017 · ENG
Mitigation of Thermal Resistance in High Power Photodiodes as a Means to Increase Device Performance$350,000
· FY2015 · ENG
Collaborative Research: Impact Ionization Engineered and Nanoscale Quantum-dot Based Avalanche Photodiodes for Reliable Near- to Long-wave Infrared Photon Counting$99,000
· FY2006 · ENG · contact PI
NIRT: Integrated Nanophotonics for Quantum Computation and Quantum Information Processing$1,300,000
· FY2005 · ENG
Optical: Collaborative Research: Bandgap Engineered Ultrafast Heterostructure Avalanche Photodiodes$185,000
· FY2003 · ENG · contact PI
Modeling and Optimization of Ultrafast and Low-Noise Thin Avalanche Photodiodes for Optical Communications$311,830
· FY2001 · ENG
Modeling and Optimization of Ultrafast and Low-Noise Thin Avalanche Photodiodes for Optical Communications$299,830
· FY2001 · ENG