26 July 2026 to 1 August 2026
University of Maryland, College Park
US/Eastern timezone

Observation of quantum-field-theory dynamics on a spin-phonon quantum computer

27 Jul 2026, 14:20
20m
Margaret Brent A (Adele H. Stamp Student Union)

Margaret Brent A

Adele H. Stamp Student Union

3972 Campus Dr, College Park, MD 20742
Contributed talk Quantum computing and quantum information Quantum computing and quantum information

Speaker

Vinay Vikramaditya (University of Maryland, College Park)

Description

Quantum simulation is a promising approach to study out-of-equilibrium dynamics of quantum gauge field theories, particularly in regimes where classical methods become intractable. Mapping bosonic (gauge) degrees of freedom onto qubits requires truncating their infinite dimensional Hilbert space, leading to errors that grow with system energy and simulation time, and resulting in a large qubit and gate overhead in fully digital schemes. An alternative method is to augment the qubit-based quantum computer with controllable bosonic degrees of freedom, enabling hybrid architectures that naturally implement qubit, bosonic and qubit-bosonic gates. In this work, we simulate nonequilibrium dynamics of a (1+1)-dimensional Yukawa model, a fermion-boson quantum field theory, on a trapped-ion platform where qubits are encoded in the ions’ internal levels and bosons in their motional modes. The fermion- and boson-occupation state probabilities were measured and found to be in good agreement with classical simulations, even for high phonon occupations. This hybrid approach bypasses the need for a large qubit overhead, and removes truncation errors. Our results, therefore, open the way to achieving demonstrable quantum advantage in qubit-boson quantum computing.

Authors

Prof. Alaina Green (University of Maryland, College Park) Anton Than (University of Maryland, College Park) Dr Nhung Nguyen (University of Maryland, College Park) Prof. Norbert Linke (University of Maryland, College Park) Dr Saurabh V. Kadam (University of Washington, Seattle) Vinay Vikramaditya (University of Maryland, College Park) Xingxin Liu (University of Maryland, College Park) Prof. Zohreh Davoudi (University of Maryland)

Presentation materials