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20102014
most citedThe Quantum as an Emergent System

23 citations · 85 across the 7 of their papers we have counts for

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quant-ph20149 cited

Implications of a deeper level explanation of the deBroglie-Bohm version of quantum mechanics

Gerhard Groessing, Siegfried Fussy, Johannes Mesa Pascasio +1

Elements of a "deeper level" explanation of the deBroglie-Bohm (dBB) version of quantum mechanics are presented. Our explanation is based on an analogy of quantum wave-particle dua…

quant-ph20147 cited

Extreme beam attenuation in double-slit experiments: Quantum and subquantum scenarios

Gerhard Groessing, Siegfried Fussy, Johannes Mesa Pascasio +1

Combining high and low probability densities in intensity hybrids, we study some of their properties in double-slit setups. In particular, we connect to earlier results on beam att…

quant-ph201412 cited

Relational causality and classical probability: Grounding quantum phenomenology in a superclassical theory

Gerhard Groessing, Siegfried Fussy, Johannes Mesa Pascasio +1

By introducing the concepts of "superclassicality" and "relational causality", it is shown here that the velocity field emerging from an n-slit system can be calculated as an avera…

quant-ph20128 cited

Classical Simulation of Double Slit Interference via Ballistic Diffusion

Johannes Mesa Pascasio, Siegfried Fussy, Herbert Schwabl +1

Based on a proposed classical explanation, the quantum mechanical "decay of the wave packet" is shown to simply result from sub-quantum diffusion with a specific diffusivity varyin…

quant-ph20125 cited

Quantum features derived from the classical model of a bouncer-walker coupled to a zero-point field

Herbert Schwabl, Johannes Mesa Pascasio, Siegfried Fussy +1

In our bouncer-walker model a quantum is a nonequilibrium steady-state maintained by a permanent throughput of energy. Specifically, we consider a "particle" as a bouncer whose osc…

quant-ph201223 cited

The Quantum as an Emergent System

Gerhard Groessing, Siegfried Fussy, Johannes Mesa Pascasio +1

Double slit interference is explained with the aid of what we call "21stcentury classical physics". We model a particle as an oscillator ("bouncer") in a thermal context, which is…