activity
20242026
collaborators

11 papers

quant-ph2026

Mathematical Foundation for Quantum Computing of Electromagnetic Wave Propagation in Dielectric Media

Abhay K. Ram, Efstratios Koukoutsis, George Vahala +1

Can quantum computers effectively simulate the propagation and scattering of electromagnetic waves in a classical plasma? This chapter introduces some of the basic concepts in math…

quant-ph2026

Symplectic perspective to quantum computing for Hamiltonian systems

Efstratios Koukoutsis, Kyriakos Hizanidis, Lucas I Inigo Gamiz +4

This work develops a symplectic framework for quantum computing to be applied to classical Hamiltonian systems, exploiting the intrinsic geometric compatibility between unitary qua…

physics.plasm-ph2026

Quantum Computing Framework for Transient Scattering of Electromagnetic Waves by Dielectric Structures

Min Soe, Abhay K. Ram, Efstratios Koukoutsis +3

Quantum computers are ideally set up to solve linear systems which are of a form similar to the Schrodinger/Dirac equation of quantum mechanics. In the framework of linear response…

quant-ph2026

Transient fields in oblique scattering from an infinite planar dielectric interface -- a qubit lattice simulation

Min Soe, George Vahala, Linda Vahala +3

An initial value algorithm is utilized to examine the time dependent evolution of the electromagnetic fields arising from oblique scattering of bounded pulses from an infinite plan…

physics.plasm-ph2026

Quantum Monte Carlo Simulations for predicting electron-positron pair production via the linear Breit-Wheeler process

Lucas I. Iñigo Gamiz, Óscar Amaro, Efstratios Koukoutsis +1

Quantum computing (QC) has the potential to revolutionise the future of scientific simulations. To harness the capabilities that QC offers, we can integrate it into hybrid quantum-…

physics.plasm-ph2025

Qubit Lattice Algorithm Simulations of the Scattering of a Bounded Two Dimensional Electromagnetic Pulse from an Infinite Planar Dielectric Interface

Min Soe, George Vahala, Linda Vahala +3

Qubit lattice algorithm (QLA) simulations are performed for a two-dimensional (2D) spatially bounded pulse propagating onto a plane interface between two dielectric slabs. QLA is a…