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Article

How Hard Is It to Detect Surveillance? A Formal Study of Panopticons and Their Detectability Problem

by
Vasiliki Liagkou
1,2,*,
Panayotis E. Nastou
3,4,
Paul Spirakis
5,6 and
Yannis C. Stamatiou
1,7
1
Computer Technology Institute and Press-“Diophantus”, University of Patras Campus, 26504 Patras, Greece
2
Department of Informatics and Telecommunications, University of Ioannina, 47100 Kostakioi Arta, Greece
3
Applied Mathematics and Mathematical Modeling Laboratory, Department of Mathematics, University of the Aegean, 83200 Samos, Greece
4
Center for Applied Optimization, University of Florida, Gainesville, FL 32611, USA
5
Department of Computer Science, University of Liverpool, Liverpool L69 3BX, UK
6
Department of Computer Engineering and Informatics, University of Patras, 26504 Patras, Greece
7
Department of Business Administration, University of Patras, 26504 Patras, Greece
*
Author to whom correspondence should be addressed.
Cryptography 2022, 6(3), 42; https://doi.org/10.3390/cryptography6030042
Submission received: 30 April 2022 / Revised: 29 July 2022 / Accepted: 10 August 2022 / Published: 20 August 2022
(This article belongs to the Special Issue Cyber Security, Cryptology and Machine Learning)

Abstract

The Panopticon (which means “watcher of everything”) is a well-known prison structure of continuous surveillance and discipline studied by Bentham in 1785. Today, where persistent, massive scale, surveillance is immensely facilitated by new technologies, the term Panopticon vaguely characterizes institutions with a power to acquire and process, undetectably, personal information. In this paper we propose a theoretical framework for studying Panopticons and their detectability status. We show, based on the Theory of Computation, that detecting Panopticons, modelled either as a simple Turing Machine or as an Oracle Turing Machine, is an undecidable problem. Furthermore, we show that for each sufficiently expressive formal system, we can effectively construct a Turing Machine for which it is impossible to prove, within the formal system, its Panopticon status. Finally, we discuss how Panopticons can be physically detected by the heat they dissipate each time they acquire, effortlessly, information in the form of an oracle and we investigate their detectability status with respect to a more powerful computational model than classical Turing Machines, the Infinite Time Turing Machines (ITTMs).
Keywords: formal methods; security; privacy; undecidability; panopticon; turing machine; oracle computations; irreversible computations; Infinite Time Turing Machines (ITMs) formal methods; security; privacy; undecidability; panopticon; turing machine; oracle computations; irreversible computations; Infinite Time Turing Machines (ITMs)

Share and Cite

MDPI and ACS Style

Liagkou, V.; Nastou, P.E.; Spirakis, P.; Stamatiou, Y.C. How Hard Is It to Detect Surveillance? A Formal Study of Panopticons and Their Detectability Problem. Cryptography 2022, 6, 42. https://doi.org/10.3390/cryptography6030042

AMA Style

Liagkou V, Nastou PE, Spirakis P, Stamatiou YC. How Hard Is It to Detect Surveillance? A Formal Study of Panopticons and Their Detectability Problem. Cryptography. 2022; 6(3):42. https://doi.org/10.3390/cryptography6030042

Chicago/Turabian Style

Liagkou, Vasiliki, Panayotis E. Nastou, Paul Spirakis, and Yannis C. Stamatiou. 2022. "How Hard Is It to Detect Surveillance? A Formal Study of Panopticons and Their Detectability Problem" Cryptography 6, no. 3: 42. https://doi.org/10.3390/cryptography6030042

APA Style

Liagkou, V., Nastou, P. E., Spirakis, P., & Stamatiou, Y. C. (2022). How Hard Is It to Detect Surveillance? A Formal Study of Panopticons and Their Detectability Problem. Cryptography, 6(3), 42. https://doi.org/10.3390/cryptography6030042

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