Zobrazeno 1 - 10
of 26
pro vyhledávání: '"Gabriele Carcassi"'
Autor:
Gabriele Carcassi, Christine A. Aidala
Publikováno v:
Scientific Reports, Vol 13, Iss 1, Pp 1-6 (2023)
Abstract We give a geometric interpretation for the principle of stationary action in classical Lagrangian particle mechanics. In a nutshell, the difference of the action along a path and its variation effectively “counts” the possible evolutions
Externí odkaz:
https://doaj.org/article/1718626be6094b05ae3b061047fe0e92
Autor:
Gabriele Carcassi, Christine A. Aidala
Publikováno v:
Entropy, Vol 25, Iss 12, p 1670 (2023)
Measure theory is used in physics, not just to capture classical probability, but also to quantify the number of states. In previous works, we found that state quantification plays a foundational role in classical mechanics, and, therefore, we set ou
Externí odkaz:
https://doaj.org/article/1915f1cc312a4182b73e387d8878afe4
At the onset of quantum mechanics, it was argued that the new theory would entail a rejection of classical logic. The main arguments to support this claim come from the non-commutativity of quantum observables, which allegedly would generate a non-di
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fe17f920d06df5ed42b5cb0805f5bd2b
Autor:
Joe Breen, Christopher Weaver, Lincoln Bryant, Robert Gardner, Gabriele Carcassi, Shawn McKee
Publikováno v:
PEARC
The SLATE (Services Layer at the Edge) accelerates collaborative scientific computing through a secure container orchestration framework focused on the Science DMZ, enabling creation of advanced multi-institution platforms and novel science gateways.
Autor:
Alexander Gaenko, Tianran Chen, Synge Todo, Matthias Troyer, Hiroshi Shinaoka, James P.F. LeBlanc, Ryo Igarashi, Ping Nang Ma, Ryan Levy, Qiaoyuan Dong, Sergei Iskakov, Joseph Paki, Jan Gukelberger, Gabriele Carcassi, Mario S. Könz, Lukas Gamper, Emanuel Gull, Andrey E. Antipov, Xi Chen
Publikováno v:
Computer Physics Communications. 213:235-251
The open source ALPS (Algorithms and Libraries for Physics Simulations) project provides a collection of physics libraries and applications, with a focus on simulations of lattice models and strongly correlated systems. The libraries provide a conven
We show that the main difference between classical and quantum systems can be understood in terms of information entropy. Classical systems can be considered the ones where the internal dynamics can be known with arbitrary precision while quantum sys
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8b3ce574ee3d7cb491bc8925efb80612
http://arxiv.org/abs/2001.07206
http://arxiv.org/abs/2001.07206
In this work we show the equivalence between Hamiltonian mechanics and conservation of information entropy. We will show that distributions with coordinate independent values for information entropy require that the manifold on which the distribution
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::99362f0abb4ef9dc3f8844ef239af709
The tensor product postulate of quantum mechanics states that the Hilbert space of a composite system is the tensor product of the components' Hilbert spaces. All current formalizations of quantum mechanics that do not contain this postulate contain
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::00c5f26bb70df2f4f07db406528070de
Publikováno v:
Physica Scripta. 95:084003
In a previous effort [arXiv:1708.05492] we have created a framework that explains why topological structures naturally arise within a scientific theory; namely, they capture the requirements of experimental verification. This is particularly interest