Jason F. Alicea
William K. Davis Professor of Theoretical Physics
B.S., University of Florida, 2001; M.A., University of California (Santa Barbara), 2005; Ph.D., 2007. Associate Professor, Caltech, 2012-15; Professor, 2015-22; Davis Professor, 2022-.
Research Interests: Quantum Condensed Matter (theory)
Overview
As a condensed matter theorist, I am broadly interested in uncovering new exotic phenomena that emerge from the interplay between topology and quantum mechanics. Topological phases of matter that host emergent particles known as `anyons' are a particular fascination. I often draw inspiration from the idea that one can design experimentally realistic blueprints for these phases by piecing together well-understood components. Much of my work also aims to devise new detection and manipulation protocols in such designer architectures. In essence the goal is to ‘out-engineer nature', both to approach quantum-information applications and to reveal new facets of quantum mechanics never before perceived in the laboratory.
Selected Awards
- "Scalable designs" publication recognized as a Physical Review B 50th anniversary milestone, 2020
- Bergmann Memorial Research Award, 2017
- Outstanding Referee, American Physical Society, 2013
- Alfred P. Sloan fellow, 2012
- Professor of the month, Caltech, 2012
Selected Awards
- "Scalable designs" publication recognized as a Physical Review B 50th anniversary milestone, 2020
- Bergmann Memorial Research Award, 2017
- Outstanding Referee, American Physical Society, 2013
- Alfred P. Sloan fellow, 2012
- Professor of the month, Caltech, 2012
Education and Outreach Activities
- PhD Comics cartoon about anyons and topological quantum computation: How to Tie a Quantum Knot
- Undergraduate research mentor, Caltech SURF program (2009, 2013, 2015, 2018, 2019, 2020)
- Physics undergraduate option rep, Caltech (Fall 2018-present)
- Boulder Summer School advisory board member (2021-present)
- Lecturer, Topological Matter School 2022, San Sebastián, Spain
- Lecturer, Quantum Computing Summer School 2023, Los Alamos National LabSURF
- Lecturer, Nanotechnology Meets Quantum Information Summer School 2024, San Sebastián, Spain
Education and Outreach Activities
- PhD Comics cartoon about anyons and topological quantum computation: How to Tie a Quantum Knot
- Undergraduate research mentor, Caltech SURF program (2009, 2013, 2015, 2018, 2019, 2020)
- Physics undergraduate option rep, Caltech (Fall 2018-present)
- Boulder Summer School advisory board member (2021-present)
- Lecturer, Topological Matter School 2022, San Sebastián, Spain
- Lecturer, Quantum Computing Summer School 2023, Los Alamos National LabSURF
- Lecturer, Nanotechnology Meets Quantum Information Summer School 2024, San Sebastián, Spain
Patents
- Measuring and manipulating states of non-Abelian quasiparticles via quantum dot hybridization energy shifts. Publication number: 20180053113
Patents
- Measuring and manipulating states of non-Abelian quasiparticles via quantum dot hybridization energy shifts. Publication number: 20180053113
Related News
Read more newsRelated Courses
Ph/APh 223 ab. Advanced Condensed-Matter Physics.
9 units (3-0-6); second, third terms, 2025-26.
Prerequisites: Ph 135 or equivalent, or instructor's permission.
Advanced topics in condensed-matter physics, with emphasis on the effects of interactions, symmetry, and topology in many-body systems. Ph/APh 223 a covers second quantization, Hartree-Fock theory of the electron gas, Mott insulators and quantum magnetism, spin liquids, bosonization, and the integer and fractional quantum Hall effect. Ph/APh 223 b continues with superfluidity and superconductivity; topics include the Bose-Hubbard model, Ginzburg-Landau theory, BCS theory, tunneling signatures of superconductivity, Josephson junctions, superconducting qubits, and topological superconductivity.
Instructor: Alicea
Instructor: Alicea