{"id":148160,"date":"2022-10-14T11:24:39","date_gmt":"2022-10-14T16:24:39","guid":{"rendered":"https:\/\/lifeboat.com\/blog\/2022\/10\/fluctuation-relations-for-irreversible-emergence-of-information"},"modified":"2022-10-14T11:24:39","modified_gmt":"2022-10-14T16:24:39","slug":"fluctuation-relations-for-irreversible-emergence-of-information","status":"publish","type":"post","link":"https:\/\/lifeboat.com\/blog\/2022\/10\/fluctuation-relations-for-irreversible-emergence-of-information","title":{"rendered":"Fluctuation relations for irreversible emergence of information"},"content":{"rendered":"<p><a class=\"aligncenter blog-photo\" href=\"https:\/\/lifeboat.com\/blog.images\/fluctuation-relations-for-irreversible-emergence-of-information2.jpg\"><\/a><\/p>\n<p>Information variations in a chain-like system are associated to energy transactions with the environment, which can take place reversibly or irreversibly, with a lower theoretical energy limit<sup><a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 22\" title=\"Bennett, C. H. Logical reversibility of computation. IBM J. Res. Dev. 17525&ndash;532 (1973).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR22\" id=\"ref-link-section-d110577391e362\">22<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 23\" title=\"Landauer, R. Irreversibility and heat generation in the computing process. Adv. Chem. Phys. 5183&ndash;191 (1961).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR23\" id=\"ref-link-section-d110577391e365\">23<\/a><\/sup>. Fluctuations as a consequence of pure computations are on the order of the thermal level (i.e., similar to <i>kT<\/i>, being <i>k<\/i> the Boltzmann constant and <i>T<\/i> the absolute temperature), according to Landauer\u2019s principle. Such energies are negligible at routine human scales but become significant when the size of the system is nanoscopic or smaller, because the work and heat it generates also compare with the thermal level. Small systems are based on nanostructures, including individual molecules and arrangements of atoms, such as biological and quantum systems.<\/p>\n<p>Fluctuation theorems have appeared in recent years explaining quantitatively energy imbalances between forward and reverse pathways or between equilibrium and non-equilibrium processes<sup><a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 24\" title=\"Bustamante, C., Liphardt, J. & Ritort, F. The nonequilibrium thermodynamics of small systems. Phys. Today 58, 43 (2005).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR24\" id=\"ref-link-section-d110577391e381\">24<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 25\" title=\"Ritort, F. Nonequilibrium fluctuations in small systems: From physics to biology. Adv. Chem. Phys. 137, 31&ndash;123 (2008).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR25\" id=\"ref-link-section-d110577391e384\">25<\/a><\/sup>. They have been tested experimentally<sup><a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" title=\"Liphardt, J., Dumont, S., Smith, S. B., Tinoco, I. & Bustamante, C. Equilibrium information from nonequilibrium measurements in an experimental test of Jarzynski\u2019s equality. Science 296, 1832 (2002).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR26\" id=\"ref-link-section-d110577391e388\">26<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" title=\"Collin, D. et al. Verification of the Crooks fluctuation theorem and recovery of RNA folding free energies. Nature 437,231 (2005).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR27\" id=\"ref-link-section-d110577391e388_1\">27<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 28\" title=\"Douarche, F., Ciliberto, S., Petrosyan, A. & Rabbiosi, I. An experimental test of the Jarzynski equality in a mechanical experiment. Europhys. Lett. 70,593 (2005).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR28\" id=\"ref-link-section-d110577391e391\">28<\/a><\/sup>, mostly in biomolecular systems analyzed on a one-by-one basis<sup><a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 29\" title=\"Bustamante, C. In singulo biochemistry: When less is more. Annu. Rev. Biochem. 77, 45 (2008).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR29\" id=\"ref-link-section-d110577391e395\">29<\/a><\/sup>. Most of these theorems establish relations among thermodynamic potentials for general systems, often with no specific insight into information theory. This theory, in turn, deals with spatially-indexed, 1-dimensional arrangements of symbols, which may not be necessarily associated to a time order. Recent generalizations separate the role of information and feedback control<sup><a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 30\" title=\"Sagawa, T. & Ueda, M. Generalized Jarzynski equality under nonequilibrium feedback control. Phys. Rev. Lett. 104, 090602 (2010).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR30\" id=\"ref-link-section-d110577391e399\">30<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 31\" title=\"Horowitz, J. M. & Sandberg, H. Second-law-like inequalities with information and their interpretations. New J. Phys. 16, 125007 (2014).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR31\" id=\"ref-link-section-d110577391e402\">31<\/a><\/sup>, but still the interpretation of non-Markovianity, irreversibility and reversibility in terms of purely informational operations such as <i>reading<\/i>, <i>writing<\/i> and error correction<sup><a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 32\" title=\"Sartori, P. & Pigolotti, S. Thermodynamics of error correction. Phys. Rev. X 5, 041039 (2015).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR32\" id=\"ref-link-section-d110577391e406\">32<\/a>,<a data-track=\"click\" data-track-action=\"reference anchor\" data-track-label=\"link\" data-test=\"citation-ref\" aria-label=\"Reference 33\" title=\"Arias-Gonzalez, J. R. Writing, proofreading and editing in information theory. Entropy 20,368 (2018).\" href=\"https:\/\/www.nature.com\/articles\/s41598-022-21729-9#ref-CR33\" id=\"ref-link-section-d110577391e409\">33<\/a><\/sup> remains obscured.<\/p>\n<p>Here, we analyze energy exchanges associated to the symbolic management of a sequence of characters, without reference to the physical construction of the chain. Just by considering reversibility at the single sequence level and conservation laws, we next present two pairs of fluctuations equalities in the creation of information sequences, which use depends on energy exchange constraints. Our analysis integrates key information concepts, namely, <i>reading<\/i>, <i>writing<\/i>, <i>proof <i>reading<\/i><\/i> and <i>editing<\/i> in the thermodynamic description of a string of symbols with information.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Information variations in a chain-like system are associated to energy transactions with the environment, which can take place reversibly or irreversibly, with a lower theoretical energy limit22,23. Fluctuations as a consequence of pure computations are on the order of the thermal level (i.e., similar to kT, being k the Boltzmann constant and T the absolute [\u2026]<\/p>\n","protected":false},"author":661,"featured_media":0,"comment_status":"open","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[3,4,48,1617],"tags":[],"class_list":["post-148160","post","type-post","status-publish","format-standard","hentry","category-biological","category-nanotechnology","category-particle-physics","category-quantum-physics"],"_links":{"self":[{"href":"https:\/\/lifeboat.com\/blog\/wp-json\/wp\/v2\/posts\/148160","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/lifeboat.com\/blog\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/lifeboat.com\/blog\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/lifeboat.com\/blog\/wp-json\/wp\/v2\/users\/661"}],"replies":[{"embeddable":true,"href":"https:\/\/lifeboat.com\/blog\/wp-json\/wp\/v2\/comments?post=148160"}],"version-history":[{"count":0,"href":"https:\/\/lifeboat.com\/blog\/wp-json\/wp\/v2\/posts\/148160\/revisions"}],"wp:attachment":[{"href":"https:\/\/lifeboat.com\/blog\/wp-json\/wp\/v2\/media?parent=148160"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/lifeboat.com\/blog\/wp-json\/wp\/v2\/categories?post=148160"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/lifeboat.com\/blog\/wp-json\/wp\/v2\/tags?post=148160"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}