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Career

  • 1988 Service de Physique Théorique, Centre d'Etudes Nucléaires de Saclay, Gif-sur-Yvette, France Visiting Scientist
  • 1988-1991: University of Chicago, James Franck and Enrico Fermi Institutes Postdoctoral Research
  • 1991-1996: Princeton University - Assistant Professor of Physics Associated Faculty, Program in Applied and Computational Mathematics
  • 1996-2006: University of Arizona - Associate Professor then Professor of Physics and Applied Mathematics
  • 2006-2023: University of Cambridge - Schlumberger Professor of Complex Physical Systems, DAMTP
  • 2023-: University of Cambridge - Alan Turing Professor of Complex Physical Systems, DAMTP

Research

The primary focus of my research is biological physics.  Our group conducts both theoretical and experimental research on problems of evolutionary biology (such as the evolution of multicellularity), developmental biology, and aspects of nonequilibrium phenomena unique to living systems.  We also conduct research on natural pattern formation in the physical and biological world.  

Selected Recent Publications

1. Coffee Stains, Cell Receptors, and Time Crystals: Lessons From the Old Literature, Raymond E. Goldstein, Physics Today 71, 32-38 (2018).

2. Time-Irreversibility and Criticality in the Motility of a Flagellate Microorganism, Kirsty Y. Wan and Raymond E. Goldstein, Physical Review Letters 121, 058103 (2018).

3. The Noisy Basis of Morphogenesis: Mechanisms and Mechanics of Cell Sheet Folding Inferred from Developmental Variability, Pierre A. Haas, Stephanie Höhn, Aurelia R. Honerkamp-Smith, Julius B. Kirkegaard, and Raymond E. Goldstein PLOS Biology 16, e2005536 (2018).

4. Why Clothes Don't Fall Apart: Tension Transmission in Staple Yarns, Patrick B. Warren, Robin C. Ball, and Raymond E. Goldstein, Physical Review Letters 120, 158001 (2018).

5. Aerotaxis in the Closest Relatives of Animals, Julius B. Kirkegaard, Ambre Bouillant, Alan O. Marron, Kyriacos C. Leptos, and Raymond E. Goldstein, eLife 5, e18109 (2016).

6. Batchelor Prize Lecture: Fluid Dynamics at the Scale of the Cell, Raymond E. Goldstein, Journal of Fluid Mechanics 807, 1-39 (2016).

7. Instabilities and Solitons in Minimal Strips, Thomas Machon, Gareth P. Alexander, Raymond E. Goldstein, and Adriana I. Pesci, Physical Review Letters 117, 017801 (2016).

8. Coordinated Beating of Algal Flagella is Mediated by Basal Coupling, Kirsty Y. Wan and Raymond E. Goldstein, Proceedings of the National Academy of Sciences USA 113, E2784-93 (2016).

 

Publications

Biotechnology at low Reynolds numbers.
JP Brody, P Yager, RE Goldstein, RH Austin
– Biophysical Journal
(1996)
71,
3430
Attracting Manifold for a Viscous Topology Transition
RE Goldstein, AI Pesci, MJ Shelley
– Phys Rev Lett
(1995)
75,
3665
Nonlinear dynamics of stiff polymers
RE Goldstein, SA Langer
– Phys Rev Lett
(1995)
75,
1094
Hydrodynamics of fingering instabilities in dipolar fluids.
DP Jackson, RE Goldstein, AO Cebers
– Physical Review E
(1994)
50,
298
Nonlocal contour dynamics model for chemical front motion
DM Petrich, RE Goldstein
– Physical review letters
(1994)
72,
1120
Dynamics of pattern formation in magnetic fluids
RE Goldstein, DP Jackson, SA Langer
– Colloids and Surfaces A: Physicochemical and Engineering Aspects
(1993)
80,
29
Labyrinthine Pattern Formation in Magnetic Fluids
AJ Dickstein, S Erramilli, RE Goldstein, DP Jackson, SA Langer
– Science
(1993)
261,
1012
Finite-time singularity formation in Hele-Shaw systems.
TF Dupont, RE Goldstein, LP Kadanoff, SM Zhou
– Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics
(1993)
47,
4182
Droplet breakup in a model of the Hele-Shaw cell.
P Constantin, TF Dupont, RE Goldstein, LP Kadanoff, MJ Shelley, SM Zhou
– Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics
(1993)
47,
4169
Topology transitions and singularities in viscous flows.
RE Goldstein, AI Pesci, MJ Shelley
– Physical Review Letters
(1993)
70,
3043
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Research Group

Biological Physics and Mechanics

Room

H0.06

Telephone

01223 337908