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Altermagnets, Pair-Density Waves and the Superconducting Diode Effect - VQE Approach to Optimize a N-Qubit Heat Engine Fuelled by Entanglement

ICTP-SAIFR via YouTube

Overview

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Explore cutting-edge quantum technologies research through this 44-minute research group meeting featuring two specialized presentations. Learn about altermagnets, pair-density waves, and the superconducting diode effect from Hermann Freire of UFG, who examines these emerging phenomena in quantum materials and their potential applications in superconducting electronics. Discover how variational quantum eigensolvers (VQE) can optimize N-qubit heat engines powered by entanglement through Krissia de Zawadski's presentation from IFSC-USP, which demonstrates novel approaches to quantum thermodynamics and energy conversion at the quantum scale. Gain insights into two distinct but complementary areas of quantum physics research, from fundamental materials science to quantum information applications in thermodynamic systems.

Syllabus

Hermann Freire and Krissia de Zawadski

Taught by

ICTP-SAIFR

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