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pro vyhledávání: '"Sá, Nahum"'
Autor:
Melo, Filipe V., Sá, Nahum, Roditi, Ithzak, Landi, Gabriel T., Souza, Alexandre M., Oliveira, Ivan S., Sarthour, Roberto S.
We put forth a quantum simulation of a stroboscopic two-stroke thermal engine in the IBMQ processor. The system consists of a quantum spin chain connected to two baths at their boundaries, prepared at different temperatures using the variational quan
Externí odkaz:
http://arxiv.org/abs/2203.13773
In rustworkx, we provide a high-performance, flexible graph library for Python. rustworkx is inspired by NetworkX but addresses many performance concerns of the latter. rustworkx is written in Rust and is particularly suited for performance-sensitive
Externí odkaz:
http://arxiv.org/abs/2110.15221
Publikováno v:
Results in Physics, Volume 44, January 2023, 106131
In this work, using a NISQ framework, we obtain the gap of a BCS Hamiltonian. This could lead to interesting implications for superconductivity research. For such task, we choose to use the Variational Quantum Deflation and analyze the hardware restr
Externí odkaz:
http://arxiv.org/abs/2105.14936
Autor:
Souza, Alexandre M., Martins, Eldues O., Roditi, Itzhak, Sá, Nahum, Sarthour, Roberto S., Oliveira, Ivan S.
Publikováno v:
Front. Phys., 18 January 2022
Quantum computing, along with quantum metrology and quantum communication, are disruptive technologies that promise, in the near future, to impact different sectors of academic research and industry. Among the computational challenges with great inte
Externí odkaz:
http://arxiv.org/abs/2005.02846
Autor:
Sá, Nahum, Roditi, Itzhak
We focus on using an architecture similar to the $\beta$-Variational Autoencoder ($\beta$-VAE) to discriminate if a quantum state is entangled or separable based on measurements. We split the data into two sets, the set of local and correlated measur
Externí odkaz:
http://arxiv.org/abs/2004.14420
Publikováno v:
In Results in Physics January 2023 44
Autor:
Bergholm, Ville, Izaac, Josh, Schuld, Maria, Gogolin, Christian, Ahmed, Shahnawaz, Ajith, Vishnu, Alam, M. Sohaib, Alonso-Linaje, Guillermo, AkashNarayanan, B., Asadi, Ali, Arrazola, Juan Miguel, Azad, Utkarsh, Banning, Sam, Blank, Carsten, Bromley, Thomas R, Cordier, Benjamin A., Ceroni, Jack, Delgado, Alain, Di Matteo, Olivia, Dusko, Amintor, Garg, Tanya, Guala, Diego, Hayes, Anthony, Hill, Ryan, Ijaz, Aroosa, Isacsson, Theodor, Ittah, David, Jahangiri, Soran, Jain, Prateek, Jiang, Edward, Khandelwal, Ankit, Kottmann, Korbinian, Lang, Robert A., Lee, Christina, Loke, Thomas, Lowe, Angus, McKiernan, Keri, Meyer, Johannes Jakob, Montañez-Barrera, J. A., Moyard, Romain, Niu, Zeyue, O'Riordan, Lee James, Oud, Steven, Panigrahi, Ashish, Park, Chae-Yeun, Polatajko, Daniel, Quesada, Nicolás, Roberts, Chase, Sá, Nahum, Schoch, Isidor, Shi, Borun, Shu, Shuli, Sim, Sukin, Singh, Arshpreet, Strandberg, Ingrid, Soni, Jay, Száva, Antal, Thabet, Slimane, Vargas-Hernández, Rodrigo A., Vincent, Trevor, Vitucci, Nicola, Weber, Maurice, Wierichs, David, Wiersema, Roeland, Willmann, Moritz, Wong, Vincent, Zhang, Shaoming, Killoran, Nathan
PennyLane is a Python 3 software framework for differentiable programming of quantum computers. The library provides a unified architecture for near-term quantum computing devices, supporting both qubit and continuous-variable paradigms. PennyLane's
Externí odkaz:
http://arxiv.org/abs/1811.04968
Akademický článek
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Akademický článek
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Autor:
Sá, Nahum1 (AUTHOR) nahumsa@cbpf.br, Roditi, Itzhak1 (AUTHOR) roditi@cbpf.br
Publikováno v:
Physics Letters A. Nov2021, Vol. 417, pN.PAG-N.PAG. 1p.