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381On the Significance of the Gottesman–Knill TheoremBritish Journal for the Philosophy of Science 68 (1): 91-121. 2017.According to the Gottesman–Knill theorem, quantum algorithms that utilize only the operations belonging to a certain restricted set are efficiently simulable classically. Since some of the operations in this set generate entangled states, it is commonly concluded that entanglement is insufficient to enable quantum computers to outperform classical computers. I argue in this article that this conclusion is misleading. First, the statement of the theorem is, on reflection, already evident when we …Read more
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433Many worlds, the cluster-state quantum computer, and the problem of the preferred basisStudies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 43 (1): 35-42. 2012.I argue that the many worlds explanation of quantum computation is not licensed by, and in fact is conceptually inferior to, the many worlds interpretation of quantum mechanics from which it is derived. I argue that the many worlds explanation of quantum computation is incompatible with the recently developed cluster state model of quantum computation. Based on these considerations I conclude that we should reject the many worlds explanation of quantum computation.
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409Reconsidering No-Go Theorems from a Practical PerspectiveBritish Journal for the Philosophy of Science 69 (3): 633-655. 2018.I argue that our judgements regarding the locally causal models that are compatible with a given constraint implicitly depend, in part, on the context of inquiry. It follows from this that certain quantum no-go theorems, which are particularly striking in the traditional foundational context, have no force when the context switches to a discussion of the physical systems we are capable of building with the aim of classically reproducing quantum statistics. I close with a general discussion of th…Read more
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170On Thomas Hobbes's Fallible Natural Law TheoryHistory of Philosophy Quarterly 28 (2): 175-190. 2011.It is not clear, on the face of it, whether Thomas Hobbes's legal philosophy should be considered to be an early example of legal positivism or continuous with the natural-law tradition. On the one hand, Hobbes's command theory of law seems characteristically positivistic. On the other hand, his conception of the "law of nature," as binding on both sovereign and subject, seems to point more naturally toward a natural-law reading of his philosophy. Yet despite this seeming ambiguity, Hobbes schol…Read more
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285Quantum computingStanford Encyclopedia of Philosophy. 2019.Combining physics, mathematics and computer science, quantum computing and its sister discipline of quantum information have developed in the past few decades from visionary ideas to two of the most fascinating areas of quantum theory. General interest and excitement in quantum computing was initially triggered by Peter Shor (1994) who showed how a quantum algorithm could exponentially “speed-up” classical computation and factor large numbers into primes far more efficiently than any (known) cla…Read more
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400On the Debate Concerning the Proper Characterization of Quantum Dynamical EvolutionPhilosophy of Science 80 (5): 1125-1136. 2013.There has been a long-standing and sometimes passionate debate between physicists over whether a dynamical framework for quantum systems should incorporate not completely positive (NCP) maps in addition to completely positive (CP) maps. Despite the reasonableness of the arguments for complete positivity, we argue that NCP maps should be allowed, with a qualification: these should be understood, not as reflecting ‘not completely positive’ evolution, but as linear extensions, to a system’s entire …Read more
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407Of the many and varied applications of quantum information theory, perhaps the most fascinating is the sub-field of quantum computation. In this sub-field, computational algorithms are designed which utilise the resources available in quantum systems in order to compute solutions to computational problems with, in some cases, exponentially fewer resources than any known classical algorithm. While the fact of quantum computational speedup is almost beyond doubt, the source of quantum speedup is s…Read more
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1043Wittgenstein on Prior ProbabilitiesProceedings of the Canadian Society for History and Philosophy of Mathematics 23 85-98. 2010.Wittgenstein did not write very much on the topic of probability. The little we have comes from a few short pages of the Tractatus, some 'remarks' from the 1930s, and the informal conversations which went on during that decade with the Vienna Circle. Nevertheless, Wittgenstein's views were highly influential in the later development of the logical theory of probability. This paper will attempt to clarify and defend Wittgenstein's conception of probability against some oft-cited criticisms that s…Read more
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337On the Physical Explanation for Quantum Computational SpeedupDissertation, The University of Western Ontario. 2013.The aim of this dissertation is to clarify the debate over the explanation of quantum speedup and to submit, for the reader's consideration, a tentative resolution to it. In particular, I argue, in this dissertation, that the physical explanation for quantum speedup is precisely the fact that the phenomenon of quantum entanglement enables a quantum computer to fully exploit the representational capacity of Hilbert space. This is impossible for classical systems, joint states of which must always…Read more
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297Kant and Frege on Existence and the Ontological ArgumentHistory of Philosophy Quarterly 29 (4): 337-354. 2012.I argue that Kant's and Frege's refutations of the ontological argument are more similar than has generally been acknowledged. As I clarify, for both Kant and Frege, to say that something exists is to assert of a concept that it is instantiated. With such an assertion one expresses that there is a particular relation between the instantiating object and a rational subject - a particular mode of presentation for the object in question. By its very nature such a relation cannot be the property of …Read more
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LMU MunichMunich Center for Mathematical PhilosophyAlexander Von Humboldt Research Fellow (Part-time)
London, Ontario, Canada
Areas of Specialization
| Philosophy of Computing and Information |
| Philosophy of Physical Science |
| Immanuel Kant |
PhilPapers Editorships
| Quantum Mechanics |
| Mathematical Structure of Quantum Mechanics |