This Quantum Computing & Algorithms session addresses architectures, algorithms, and error-mitigation strategies for quantum information processing. Research includes superconducting, trapped-ion, neutral-atom, and photonic-qubit platforms; entanglement-driven computation; variational circuits; Hamiltonian simulation; and quantum optimization schemes. Topics such as quantum error-correcting codes, surface codes, stabilizer formalism, decoherence modeling, gate-fidelity benchmarking, and noise-adaptive compilation are central. Contributions involving quantum advantage demonstrations, resource-scaling analysis, pulse-level control, cryogenic electronics, and cross-platform interoperability are welcomed. Hybrid quantum-classical workflows, tensor-network-enhanced simulations, and domain-specific applications in chemistry, materials, finance, and many-body physics form significant components. Emphasis is placed on algorithmic complexity, circuit depth reduction, and feasibility assessments for fault-tolerant systems.
Title : Photoaligned azodye nanolayers: New trends for liquid crystal devices
Vladimir Chigrinov, Hong Kong University of Science and Technology, Hong Kong
Title : Where is modern physics heading? Why constants of nature matter
Alexander Unzicker, Pestalozzi Gymnasium Munchen, Germany
Title : Global photochemical model CHARM-DE of the earth’s atmosphere for altitudes 0-130 km
Alexei Krivolutsky, Central Aerological Observatory (CAO), Russian Federation
Title : Nonlinear plasma wave excitation in cylindrical semiconductor waveguides
Amir Sohail, COMSATS University Islamabad, Pakistan
Title : Using physics to eliminate implant infection in over 25000 patients to date
Thomas J Webster, Brown University, United States
Title : Nanophysics as an innovation discovery
Vladimir V Egorov, National Research Center Kurchatov Institute, Russian Federation