From the 10 of 196 papers with an AI index.
38 citations
- AGH University of KrakowPL114 papers
- Tsinghua UniversityCN101 papers
- Université Paris-SaclayFR101 papers
- Istituto Nazionale di Fisica Nucleare, Sezione di BolognaIT99 papers
- Rutherford Appleton LaboratoryGB98 papers
- European Organization for Nuclear ResearchCH95 papers
- The Ohio State UniversityUS95 papers
- Istituto Nazionale di Fisica Nucleare, Sezione di PisaIT94 papers
- Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali di FrascatiIT93 papers
- Istituto Nazionale di Fisica Nucleare, Sezione di GenovaIT93 papers
- Istituto Nazionale di Fisica Nucleare, Sezione di Roma IIT93 papers
- University of Chinese Academy of SciencesCN84 papers
18 papers · 1 filter
A framework of partial error correction for intermediate-scale quantum computers
Nikolaos Koukoulekidis, Samson Wang, Tom O'Leary +3
The paper proposes a framework for using error correction on only a subset of qubits in intermediate‑scale quantum computers, showing that mixing error‑corrected and noisy qubits c…
Quantum Boomerang Effect in Time-Crystalline Structures
Qi-wen Peng, Krzysztof Sacha, Chu-hui Fan
The quantum boomerang effect (QBE) is a unique dynamical signature of Anderson localization, characterized by a launched wavepacket that initially drifts but ultimately returns to…
Absolutely maximally entangled pure states of multipartite quantum systems
Grzegorz Rajchel-MieldzioÄ, RafaÅ BistroÅ, Albert Rico +2
Absolutely maximally entangled (AME) pure states of a system composed of parties are distinguished by the property that for any splitting at least one partial trace is maximall…
Benchmarking weak randomness in Quantum and Natural Sources
Maciej Stankiewicz, Roberto Salazar, MikoÅaj Czechlewski +7
Private randomness is a fundamental resource for cryptography, security proofs, and information processing. Quantum devices offer a unique advantage by amplifying weak randomness s…
Quantum complexity and localization in random and time-periodic unitary circuits
Himanshu Sahu, Aranya Bhattacharya, Pingal Pratyush Nath
We study the growth and saturation of complexity in Krylov basis in random quantum circuits. In Haar-random unitary evolution, we show that, for large system sizes, this notion of…
Benchmarking quantum devices beyond classical capabilities
RafaÅ BistroÅ, Rafał Bistroń, Marcin RudziÅski +4
Rapid development of quantum computing technology has led to a wide variety of sophisticated quantum devices. Benchmarking these systems becomes crucial for understanding their cap…