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20022005
most citedBohmian Mechanics and Quantum Field Theory

248 citations · 608 across the 14 of their papers we have counts for

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quant-ph200512 cited

On Superselection Rules in Bohm-Bell Theories

Samuel Colin, Thomas Durt, Roderich Tumulka

The meaning of superselection rules in Bohm-Bell theories (i.e., quantum theories with particle trajectories) is different from that in orthodox quantum theory. More precisely, the…

quant-ph200511 cited

The Analogue of Bohm-Bell Processes on a Graph

Roderich Tumulka

Bohm-Bell processes, of interest in the foundations of quantum field theory, form a class of Markov processes generalizing in a natural way both Bohm's dynamical system in co…

quant-ph2005146 cited

On Spontaneous Wave Function Collapse and Quantum Field Theory

Roderich Tumulka

One way of obtaining a version of quantum mechanics without observers, and thus of solving the paradoxes of quantum mechanics, is to modify the Schroedinger evolution by implementi…

quant-ph20056 cited

Bell's Jump Process in Discrete Time

Jonathan Barrett, Matthew Leifer, Roderich Tumulka

The jump process introduced by J. S. Bell in 1986, for defining a quantum field theory without observers, presupposes that space is discrete whereas time is continuous. In this let…

quant-ph200436 cited

Understanding Bohmian mechanics: A dialogue

Roderich Tumulka

This paper is an introduction to the ideas of Bohmian mechanics, an interpretation of quantum mechanics in which the observer plays no fundamental role. Bohmian mechanics describes…

quant-ph200436 cited

Are All Particles Real?

Sheldon Goldstein, James Taylor, Roderich Tumulka +1

In Bohmian mechanics elementary particles exist objectively, as point particles moving according to a law determined by a wavefunction. In this context, questions as to whether the…