SeminarUpcomingQuantum Technology

Long-Lived Mechanically Detected Molecular Spins for Quantum Sensing

Thursday, October 1, 2026
14:00 America/Toronto
Sahand Tabatabaei

University of Waterloo

Check the official event for registration, eligibility and attendance details.

Register
Hosted by University of Waterloo Institute for Quantum Computing60 minutes

Abstract

Sahand Tabatabaei presents SQUINT, a sensing platform that combines molecular electron spins, sensitive mechanical detection and control of spin interactions. Molecular sensors can be chemically adjusted and positioned near targets, offering flexibility that defects fixed inside a solid host cannot provide. The work uses a modified XYXY decoupling sequence to reduce dipolar interactions despite uneven control fields. In a sample containing roughly 100 trityl radicals, the reported coherence time reaches about 400 microseconds. These longer-lived spins enable frequency-selective measurements of weak alternating magnetic fields and spectroscopy of nearby nuclear-spin ensembles. The seminar explores how molecular control and mechanical readout can bring quantum sensing closer to complex chemical targets.

We use essential cookies to run the site. Optional analytics and public-page session replay help us improve World Wide. Learn more.