Area of research
Artificial Intelligence · Atomic and Molecular Physics, and Optics
Research interest
is quantum information processing, where he works on quantum control, quantum error correction, the theory of open quantum systems, quantum algorithms, and theoretical as well as experimental adiabatic quantum computation. He is the Director of the USC Center for Quantum Information Science and Technology , and is the co-Director (Scientific Director) of the USC-Lockheed Martin Center for Quantum Computing. Lidar is a recipient of a Sloan Research Fellowship, a Guggenheim Fellowship and is a Fellow of the AAAS , APS , and IEEE . Google Scholar Research.com Room: SSC 609 Email: L I D A R A T U S C DOT EDU Peer Reviewed
Simulating Chemistry on Bosonic Quantum Devices
Dynamical decoupling for superconducting qubits: A performance survey
Identification of driver genes for critical forms of COVID-19 in a deeply phenotyped young patient cohort
Adiabatic quantum computation
Evidence for quantum annealing with more than one hundred qubits
Defining and detecting quantum speedup
Experimental signature of programmable quantum annealing
Decoherence-protected quantum gates for a hybrid solid-state spin register
Quantum adiabatic Markovian master equations
Collaborative Research: Adiabatic Quantum Computing and Statistics
International Collaboration in Chemistry: Decoherence control via quantum dynamical decoupling -- theory and experiment
Quantum Computational Complexity of Classical Statistical Mechanics
Collaborative Research: Adiabatic Quantum Computing in Open Systems: Methodology, Performance, and Error Correction