BEGIN:VCALENDAR VERSION:2.0 PRODID:-//Drupal iCal API//EN X-WR-CALNAME:Events items teaser X-WR-TIMEZONE:America/Toronto BEGIN:VTIMEZONE TZID:America/Toronto X-LIC-LOCATION:America/Toronto BEGIN:DAYLIGHT TZNAME:EDT TZOFFSETFROM:-0500 TZOFFSETTO:-0400 DTSTART:20220313T070000 END:DAYLIGHT BEGIN:STANDARD TZNAME:EST TZOFFSETFROM:-0400 TZOFFSETTO:-0500 DTSTART:20221106T060000 END:STANDARD END:VTIMEZONE BEGIN:VEVENT UID:683a52c13c8f3 DTSTART;TZID=America/Toronto:20230227T143000 SEQUENCE:0 TRANSP:TRANSPARENT DTEND;TZID=America/Toronto:20230227T153000 URL:/institute-for-quantum-computing/events/spin-qubits -semiconductors-current-status-and-future SUMMARY:Spin Qubits in Semiconductors: Current Status and Future Directions CLASS:PUBLIC DESCRIPTION:Summary \n\n IQC COLLOQUIUM FEATURING XUEDONG HU DEPARTMENT OF PHYSICS\, UNIVERSITY\nAT BUFFALO\, SUNY \n\nResearch on the physical imple mentation of quantum computing has made\ndramatic progress over the past d ecade\, spearheaded by superconducting\nqubits and trapped ion qubits\, to the degree that small-scale quantum\ninformation processors are now withi n reach. Studies of semiconductor\nspin qubits\, which have often been con sidered one of the most\npromising in the long term from the perspective o f scalability\, have\nalso yielded some important results in the past deca de\, demonstrating\nexceptional coherence properties for single spins conf ined in quantum\ndots and donors and high-fidelity single-qubit gates. ... \n DTSTAMP:20250531T005217Z END:VEVENT END:VCALENDAR