University of Notre Dame
Department of Philosophy
PhD, 1995
Columbia, South Carolina, United States of America
Areas of Interest
Medieval Philosophy: Topics
  •  46
    Theory from chaos
    Episteme 10 (4): 465-478. 2013.
    I explore an agent-based model of the development and dissemination of scientific theory that makes very little use of any pre-defined (such as partnerships or collaborations). In these models, under a broad range of values of the parameters, widespread (but not universal) about scientific theory emerges. Moreover, the residual disagreement turns out to be important to developing new theories in the face of new evidence
  •  294
    Quantum logic is alive ∧ (it is true ∨ it is false)
    Proceedings of the Philosophy of Science Association 2001 (3). 2001.
    Is the quantum-logic interpretation dead? Its near total absence from current discussions about the interpretation of quantum theory suggests so. While mathematical work on quantum logic continues largely unabated, interest in the quantum-logic interpretation seems to be almost nil, at least in Anglo-American philosophy of physics. This paper has the immodest purpose of changing that fact. I shall argue that while the quantum-logic interpretation faces challenges, it remains a live option. The u…Read more
  •  67
    Michael Dickson, Review of Interpreting the Quantum World by Jeffrey Bub (review)
    Philosophy of Science 66 (3): 495-496. 1999.
    If observation is ‘theory-laden’, how can there be ‘observationally equivalent theories’? How can the observations ‘laden’ by one theory be ‘the same as’ those ‘laden’ by another? The answer might lie in the expressibility of observationally equivalent theories in a common mathematical formalism.
  •  81
    Aspects of Probability in Quantum Theory
    In Claus Beisbart & Stephan Hartmann (eds.), Probabilities in Physics, Oxford University Press. pp. 171. 2011.
  •  73
    Wavefunction Tails in the Modal Interpretation
    PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994. 1994.
    I review the modal interpretation of quantum mechanics, some versions of which rely on the biorthonormal decomposition of a statevector to determine which properties are physically possessed. Some have suggested that these versions fail in the case of inaccurate measurements, i.e., when one takes tails of the wavefunction into account. I show that these versions of the modal interpretation are satisfactory in such cases. I further suggest that a more general result is possible, namely, that thes…Read more
  •  42
    Reconstruction and Reinvention in Quantum Theory
    Foundations of Physics 45 (10): 1330-1340. 2015.
    I consider the fact that there are a number of interesting ways to ‘reconstruct’ quantum theory, and suggest that, very broadly speaking, a form of ‘instrumentalism’ makes good sense of the situation. This view runs against some common wisdom, which dismisses instrumentalism as ‘cheap’. In contrast, I consider how an instrumentalist might think about the reconstruction theorems, and, having made a distinction between ‘reconstructing’ quantum theory and ‘reinventing’ quantum theory, I suggest tha…Read more
  •  58
    Partha Ghose testing quantum mechanics on new ground
    British Journal for the Philosophy of Science 52 (1): 207-209. 2001.
  •  21
    James T. Cushing, 1937–2002
    Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (3): 601-603. 2002.
  •  85
    Is the quantum-logic interpretation dead? Its near total absence from current discussions about the interpretation of quantum theory suggests so. While mathematical work on quantum logic continues largely unabated, interest in the quantum-logic interpretation seems to be almost nil, at least in Anglo-American philosophy of physics. This paper has the immodest purpose of changing that fact. I shall argue that while the quantum-logic interpretation faces challenges, it remains a live option. The u…Read more
  •  39
    A Tribute to James T. Cushing: 1937–2002 (review)
    Foundations of Physics 35 (2): 173-176. 2005.
  •  20
    We consider an extension of signaling games to the case of prediction, where one agent perceives the current state of the world and sends a signal. The second agent perceives this signal, and makes a prediction about the next state of the world. We suggest that such games may be the basis of a model for the evolution of successful theorizing about the world.
  •  92
    If observation is 'theory-laden', how can there be 'observationally equivalent theories'? How can the observations 'laden' by one theory be 'the same as' those 'laden' by another? The answer might lie in the expressibility of observationally equivalent theories in a common mathematical formalism
  •  21
    Quantum Logic Is Alive ∧
    Philosophy of Science 68 (3): 274-287. 2001.
    Is the quantum-logic interpretation dead? Its near total absence from current discussions about the interpretation of quantum theory suggests so. While mathematical work on quantum logic continues largely unabated, interest in the quantum-logic interpretation seems to be almost nil, at least in Anglo-American philosophy of physics. This paper has the immodest purpose of changing that fact. I shall argue that while the quantum-logic interpretation faces challenges, it remains a live option. The u…Read more
  •  47
    Modal interpretations of quantum mechanics
    Stanford Encyclopedia of Philosophy. 2008.
  •  92
    Antidote or Theory?
    Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 27 (2): 229-238. 1996.
  •  14
    Review of Partha Ghose: Testing Quantum Mechanics on New Ground (review)
    with Partha Ghose
    British Journal for the Philosophy of Science 52 (1): 207-209. 2001.
  •  26
    Quantum dialogue: The making of a revolution - Mara beller; the university of chicago press, chicago, 1999, XV + 365 pp., US $35.00, ISBN 0-226-04181- (review)
    Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (3): 565-569. 2002.
  •  50
    Logical foundations for modal interpretations of quantum mechanics
    Philosophy of Science 63 (3): 329. 1996.
    This paper proposes a logic, motivated by modal interpretations, in which every quantum mechanics propositions has a truth-value. This logic is completely classical, hence violates the conditions of the Kochen-Specker theorem. It is shown how the violation occurs, and it is argued that this violation is a natural and acceptable consequence of modal interpretations. It is shown that despite its classicality, the proposed logic is empirically indistinguishable from quantum logic