This profile is built from public research funding records (CIHR, NSERC and SSHRC). We have not imported them from a University of Alberta directory, so their publications, courses and email address may be missing. Find their university profile.
Research
Latest funding
- $149,382
Sustaining Canada's Leading Dark Sector Physics Program at Belle II during High Luminosity Operations in 2025 and Beyond
NSERC · 2025 · Co-investigator
- $69,000
The MATHUSLA Experiment
NSERC · 2024 · Principal investigator
- $558,000
Harnessing the high-energy universe with IceCube and P-ONE
NSERC · 2024 · Co-investigator
Sustaining Canada's Leading Dark Sector Physics Program at Belle II during High Luminosity Operations in 2025 and Beyond
Principal investigators: Longo, Savino
Keywords: particle collider; dark sector physics; tau physics; intensity frontier; high performance computing; neutron monitoring; accelerator beam background; b physics; charge parity violation; dark matter
The MATHUSLA Experiment
Principal investigators: Robertson, Steven
Keywords: particle physics; long-lived particles; dark matter; cern; lhc; hl-lhc; wavelength shifting fiber; extruded scintillator; silicon photomultipliers; research and development
Harnessing the high-energy universe with IceCube and P-ONE
Principal investigators: Grant, Darren
Keywords: neutrino physics; high energy physics; astroparticle physics; multi-messenger; neutrino oscillations; beyond the standard model; photodetection technologies; weak interactions
The Belle II and Chiral Belle projects
Principal investigators: Hearty, Christopher
Keywords: collider; b physics; dark sector; tau physics; polarization; calorimeter; intensity frontier; computing; cp violation; electroweak
Data analysis and future developments for neutrino telescopes: IceCube and P-ONE
Principal investigators: Yáñez Garza, Juan Pablo
Keywords: Astroparticle physics; Beyond the Standard Model; High energy physics; Neutrino oscillations; Neutrino physics; Photodetection technologies; Weak interactions
The MATHUSLA Experiment
Principal investigators: Robertson, Steven
Keywords: CERN; Dark matter; Large Hadron Collider; Long lived particles; New physics; Particle Physics
The ATLAS Experiment at the Large Hadron Collider
Principal investigators: Corriveau, Francois
Keywords: atlas detector; large hadron collider; higgs boson; supersymmetry; the standard model; beyond the standard model; dark matter; low-scale gravity; top quark; energy frontier
The ATLAS Experiment at the Large Hadron Collider
Principal investigators: Vetterli, Michel
Keywords: atlas detector; large hadron collider; higgs boson; supersymmetry; the standard model; beyond the standard model; dark matter; low-scale gravity; top quark; energy frontier
The ATLAS Experiment at the Large Hadron Collider
Principal investigators: Bellerive, Alain
Keywords: atlas detector; large hadron collider; higgs boson; supersymmetry; the standard model; beyond the standard model; dark matter; low-scale gravity; top quark; energy frontier
The ATLAS Experiment at the Large Hadron Collider
Principal investigators: Arguin, Jean-Francois
Keywords: atlas detector; large hadron collider; higgs boson; supersymmetry; the standard model; beyond the standard model; dark matter; low-scale gravity; top quark; energy frontier
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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