The Illinois Quantum Information Science and Technology Center hosts a series of talks about topics related to Quantum Information Sciences in its various forms, including (but not limiting to): Quantum computers, Quantum simulation, Measuring the elusive Majorana fermion, and Photons. Talks will be given by senior researchers as well as students and postdocs. 

Nov 10, 2026   11:00 - 11:50 am  
190 Engineering Sciences Building, 1101 W Springfield Ave, Urbana, IL 61801
Kunal Sharma
Sponsor
IQUIST
Speaker
Kunal Sharma
Contact
Stephanie Gilmore
E-Mail
stephg1@illinois.edu
Phone
217-244-9570
Views
58

"Learning Ground State Observables from Quantum Experiments"

Abstract: Quantum machine learning can be viewed not only as a search for speedups in classical machine tasks, but also as a way to learn from quantum data generated by quantum processors. In this talk, I will discuss this perspective through recent work on learning ground-state observables from quantum experiments. We use quantum data from approximate ground states of two-dimensional Heisenberg XXZ model, constructed using samples from IBM Heron quantum processors and classical high-performance computing, to train neural networks that predict observables across Hamiltonian parameter space. The results show accurate generalization to unseen parameters, suggesting a path toward using quantum computers as data generators for machine learning in many-body physics.  

Bio: Kunal Sharma is a Senior Research Scientist and Team Manager at IBM Research in Chicago, where he leads work on quantum algorithms, quantum advantage, and quantum machine learning. Prior to joining IBM, he was a Hartree Postdoctoral Fellow at the University of Maryland. He also serves as an Editor for Quantum journal.  

For Zoom link you may check the IQUIST calendar weekly email or contact Stephanie Gilmore (stephg1@illinois.edu). To subscribe to our weekly email for event announcements, please go to https://lists.illinois.edu/lists/subscribe/iquist-announcements.

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