collaborators

5 papers

q-bio.QM2026

Fold-CP: A Context Parallelism Framework for Biomolecular Modeling

Dejun Lin, Simon Chu, Vishanth Iyer +35

Understanding cellular machinery requires atomic-scale reconstruction of large biomolecular assemblies. However, predicting the structures of these systems has been constrained by…

quant-ph2026

Fermionic magic resources in disordered quantum spin chains

Pedro R. Nicácio Falcão, Jakub Zakrzewski, Piotr Sierant

Fermionic non-Gaussianity quantifies a quantum state's deviation from a classically tractable free-fermionic description, constituting a necessary resource for computational quantu…

quant-ph2026

Non-stabilizerness in quantum-enhanced metrological protocols

Tanausú Hernández-Yanes, Piotr Sierant, Jakub Zakrzewski +1

Non-stabilizerness (colloquially "magic") characterizes genuinely quantum (beyond-Clifford) operations necessary for preparation of quantum states, and can be measured by stabilize…

quant-ph2025

Nonstabilizerness dynamics in many-body localized systems

Pedro R. Nicácio Falcão, Piotr Sierant, Jakub Zakrzewski +1

Nonstabilizerness, also known as ``magic'', quantifies the deviation of quantum states from stabilizer states, capturing the complexity necessary for quantum computational advantag…

quant-ph2025

Nonstabilizerness in U(1) lattice gauge theory

Pedro R. Nicácio Falcão, Poetri Sonya Tarabunga, Martina Frau +3

We present a thorough investigation of nonstabilizerness - a fundamental quantum resource that quantifies state complexity within the framework of quantum computing - in a one-dime…