135 lines
4.0 KiB
BibTeX
135 lines
4.0 KiB
BibTeX
# Ising model related literature
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@misc{britannica:2023:ferromagnetism,
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author = {Britannica, The Editors of Encyclopaedia},
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title = {ferromagnetism},
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url = {https://www.britannica.com/science/ferromagnetism},
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urldate = {2023-11-21},
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year = {2023}
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}
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@article{onsager:1944,
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author = {Lars Onsager},
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title = {Crystal statistics. I. A two-dimensional model with an order-disorder transition},
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journal = {Physical review},
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year = {1944},
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volume = {65},
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number = {3--4},
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pages = {117--149}
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}
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@misc{obermeyer:2020:ising,
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author = {Johannes Obermeyer},
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title = {The Ising Model in One and Two Dimensions},
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year = {2020},
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url = {https://www.thphys.uni-heidelberg.de/~wolschin/statsem20_3s.pdf},
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urldate = {2023-11-13},
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pages = {16},
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note = {Seminar on Statistical Physics at the University of Heidelberg, summary}
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}
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@article{niss:2004:ising,
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author = {Martin Niss},
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title = {History of the Lenz-Ising Model 1920-1950: From Ferromagnetic to Cooperative Phenomena},
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journal = {Archive for History of Exact Sciences},
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number = {3},
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volume = {59},
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year = {2004}
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}
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@article{bialek:2008:ising,
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author = {Gasper Tkacik and Elad Schneidman and Michal J. Berry II and William Bialek},
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title = {Ising models for network of real neurons},
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journal = {arXiv},
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year = {2008}
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}
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# Math and statistics
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@inbook{lindstrom:2016:ch3,
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author = {Tom Lindstrøm},
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title = {Kalkulus},
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publisher = {Universitetsforlaget},
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year = {2016},
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edition = {4},
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pages = {133--137}
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}
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@inbook{lindstrom:2016:ch10:5,
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author = {Tom Lindstrøm},
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title = {Kalkulus},
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publisher = {Universitetsforlaget},
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year = {2016},
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edition = {4},
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pages = {589--606}
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}
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@inbook{gjevik:2014:appendix,
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author = {Bjørn Gjevik and Morten Wang Fagerland},
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title = {Feltteori og vektoranalyse},
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publisher = {Farleia Forlag},
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year = {2018},
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pages = {162--163}
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}
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@book{springer:2012:modernstat,
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author = {Jay L. Devore and Kenneth N. Berk},
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title = {Modern Mathematical Statistics with Application},
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publisher = {Cham: Springer International Publishing AG},
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year = {2021},
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edition = {3}
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}
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# Python libraries
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@article{hunter:2007:matplotlib,
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author = {Hunter, J. D.},
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title = {Matplotlib: A 2D graphics environment},
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journal = {Computing in Science \& Engineering},
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volume = {9},
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number = {3},
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pages = {90--95},
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abstract = {Matplotlib is a 2D graphics package used for Python for
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application development, interactive scripting, and publication-quality
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image generation across user interfaces and operating systems.},
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publisher = {IEEE COMPUTER SOC},
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doi = {10.1109/MCSE.2007.55},
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year = 2007
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}
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@article{waskom:2021:seaborn,
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author = {Michael L. Waskom},
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title = {seaborn: statistical data visualization},
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journal = {Journal of Open Source Software},
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volume = {6},
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number = {60},
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publisher = {The Open Journal},
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year = {2021},
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doi = {10.21105/joss.03021},
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url = {https://doi.org/10.21105/joss.03021},
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pages = {3021}
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}
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# C++ libraries
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@misc{openmp:2018,
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author = {OpenMP},
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title = {OpenMP Application Programming Interface},
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year = {2018},
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url = {https://www.openmp.org/wp-content/uploads/OpenMP-API-Specification-5.0.pdf},
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urldate = {2023-10-22}
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}
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# Miscellaneous things
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@misc{tds:2021:mcmc,
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author = {Shivam Agari},
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title = {Monte Carlo Markov Chain (MCMC), Explained},
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url = {https://towardsdatascience.com/monte-carlo-markov-chain-mcmc-explained-94e3a6c8de11},
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urldate = {2023-11-24}
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}
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@misc{yale:2023:hdd,
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author = {Ismail-Beigi Research Group},
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title = {Hard Drives Methods And Materials},
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url = {https://volga.eng.yale.edu/teaching-resources/hard-drives/methods-and-materials},
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urldate = {2023-11-25},
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year = {2023}
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}
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