Oriols, X., & Mompart, J. (2012). Overview of Bohmian Mechanics. *arXiv preprint arXiv:1206.1084*.

http://arxiv.org/pdf/1206.1084.pdf

Overview of the guiding wave quantum physics theory, known as “Bohmian mechanics”

Posted by heligone on Jun 1, 2013 | 0 comments

Oriols, X., & Mompart, J. (2012). Overview of Bohmian Mechanics. *arXiv preprint arXiv:1206.1084*.

http://arxiv.org/pdf/1206.1084.pdf

Overview of the guiding wave quantum physics theory, known as “Bohmian mechanics”

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- Caltech Mc Keon Research Group
- Instituto Nacional de Matemática Pura e Aplicada – Andre Nachbin and Carlos Galeano
- MIT – John BUSH
- St. Petersburg Nuclear Physics Institute – Dr. Valeriy Sbitnev
- Università degli Studi di Palermo – Pr. Diego Molteni –
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- Université Paris Diderot – Yves Couder
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- sam on A low‑cost, precise piezoelectric droplet‑on‑demand generator
- jitendra on A low‑cost, precise piezoelectric droplet‑on‑demand generator
- jitendra on A low‑cost, precise piezoelectric droplet‑on‑demand generator
- yeptube on Statistical projection effects in a hydrodynamic pilot-wave system
- sam on “Tunnel effect “
- Carlos on “Tunnel effect “
- yonglip on Particle in a box – DotWave Self-Interference tracking and statistics
- guest on bouncing droplets
- sam on EmQm17
- Paul Bancroft on EmQm17

- Spontaneous emergence of a spin state for an emitter in a time-varying medium
- Spin Lattice of walking droplets
- Statistical projection effects in a hydrodynamic pilot-wave system
- Quantum physics Dropwise
- EmQm17
- Walking droplet above cavities
- Faraday wave droplet dynamics : discret time analysis
- Tunneling with a hydrodynamic pilot-wave model
- Walking droplets in linear channels
- Self-propulsion and crossing statistics under random initial conditions
- A trajectory equation for walking droplets : hydrodynamic pilot-wave theory
- Influence of memory on trajectory in a harmonic potential
- A model for Faraday pilot waves over variable topography
- Non-specular reflection of walking droplets
- Self-attraction into spinning eigenstates of a mobile wave source by its emission back-reaction

- Austrian Institute for Nonlinear Studies (AINS) – Gerhard Groessing
- Berkeley University – TAF LAB
- Caltech Mc Keon Research Group
- Instituto Nacional de Matemática Pura e Aplicada – Andre Nachbin and Carlos Galeano
- MIT – John BUSH
- St. Petersburg Nuclear Physics Institute – Dr. Valeriy Sbitnev
- Università degli Studi di Palermo – Pr. Diego Molteni –
- Université de Liège – Quandrops
- Université Paris Diderot – Yves Couder
- University of Bath – PAUL MILEWSKI
- University of Cambridge – Computer Laboratory – Dr Robert Brady

Andersen A.
Anderson R.
Bach R.
Bastin T.
Batelaan H.
Boudaoud A.
Brady R.
Brun P. T.
Bush J. W.
Couder Y.
Cristea-Platon T.
Decelle A.
Dorbolo S.
Eddi A.
Ellegaard C.
Faria L. M.
Filoux B.
Fort E.
Galeano Rios C.
Gautier C. H
Gilet T.
Harris D. M.
Hubert M.
Labousse M.
Lautrup B.
Lieber S. I.
Madsen J.
Martin J.
Milewsky P.
Moisy F.
Molteni D.
Moláček J.
Moukhtar J.
Nachbin A.
Oza A. U.
Perrard S.
Protière S.
Pucci G.
Reichelt C.
Rosales R. R.
Saenz P. J.
Schlagheck P.
Terwagne D.
Vandewalle N.
Wind-Willassen Ø.

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