Upcoming Events

  • Sep 16 2026

    Andrea Liu - Structure-Function Relations in Tuned Matter

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    Wednesday, September 16, 2026
    10:45 AM
  • Sep 23 2026

    Alberto Maspero - Transfer of energy for pure-gravity water waves with constant vorticity

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    Wednesday, September 23, 2026 - Wednesday, September 23, 2026
    10:45 AM - 12:00 PM
    Zoom

    Alberto Maspero – SISSA Trieste

    Wednesday, September 23, 2026

    Zoom opens: 10:30AM EDT

    Seminar begins: 10:45AM EDT

    Transfer of energy for pure-gravity water waves with constant vorticity

    We prove growth of Sobolev norms for the two-dimensional periodic gravity water waves with constant nonzero vorticity, in infinite depth and with periodic boundary conditions. Precisely we construct weakly turbulent solutions exhibiting arbitrary large growth of high Sobolev norms, while having lower-order norms of small size, yielding the first rigorous construction of weakly turbulent solutions for the water waves equations. The proof relies on a new mechanism for generating energy cascades in quasilinear dispersive PDEs with sublinear dispersion and a nonlinear transport structure. A central ingredient is to exploit quasi-resonances from 2-wave interactions to produce a resonant transport operator that drives energy to high modes and causes Sobolev norm growth.

  • Sep 30 2026

    Nigel Goldenfeld – Emergence and Generalization in Machine Learning

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    Wednesday, September 30, 2026 - Wednesday, September 30, 2026
    10:45 AM - 12:00 PM
    Zoom

    Nigel Goldenfeld – University of California San Diego

    Wednesday, September 30, 2026

    Zoom opens: 10:30AM EDT

    Seminar begins: 10:45AM EDT

    Emergence and Generalization in Machine Learning

    The remarkable ability of modern neural networks to generalize improves with increasing network capacity, even when the number of model parameters or effective degrees of freedom exceeds the number of training data points.   Here we use dynamical mean field theory to show, in a simple setting of linear regression, that this surprising behavior is the outcome of a phase transition in the stochastic field theory describing the training process.  We calculate the critical exponents and scaling function of the double descent phase transition, and show that it is marked by a breakdown of the fluctuation-dissipation theorem associated with broken ergodicity. We describe how this phenomenon is an example of emergent behavior, and that the appropriate response function has the same functional form as the simple London model of the superconducting transition, with the rigidity of the wave function corresponding to the neural network's ability to generalize accurately. Our results are distinct from earlier work, because we calculate the time-dependence specifically, not just the least norm equilibrium solutions.  This is what enables us to identify the origin of the emergent behavior.  Our work provides a specific framework with which to understand emergent behavior in artificial neural networks, and I outline some future directions.

    Work performed in collaboration with Chan Li.

  • Oct 07 2026

    Daniel Fisher - Eco-Evo Dynamics, Diversification, and Red Queen Phases Near a Snowy Fitness Peak

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    Wednesday, October 7, 2026 - Wednesday, October 7, 2026
    10:45 AM - 12:00 PM

    Daniel Fisher – Stanford University

    Wednesday, October 7, 2026

    Zoom opens: 10:30AM EDT

    Seminar begins: 10:45AM EDT

    Eco-Evo Dynamics, Diversification, and Red Queen Phases Near a Snowy Fitness Peak

    The caricature of evolution in a fitness landscape with trajectories approaching a fitness peak is very misleading., especially if drawn in two-dimensions.   The dimensionality of both organismic phenotype spaces and environmental spaces are very large, and they are inextricably coupled by evolution changing the environment:  A better caricature is a fitness snowscape.  We show that near a high-dimensional snowy peak, multiple distinct eco-evolutionary phases exist, including a diverse Red Queen phase with continual turnover of strains but no overall individual or community improvement.  

  • Oct 14 2026

    M. Cristina Marchetti – Active nematic solids and morphogenesis

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    Wednesday, October 14, 2026 - Wednesday, October 14, 2026
    10:45 AM - 12:00 PM
    Zoom

    M. Cristina Marchetti – UC Santa Barbara

    Wednesday, October 14, 2026

    Zoom opens: 10:30AM EDT

    Seminar begins: 10:45AM EDT

    Active nematic solids and morphogenesis

    Orientational order of elongated cells or muscle fibers is observed ubiquitously in biology and is known to play an important role in the organization of biological tissue. While most previous work has modeled living tissue as active fluids, in many circumstances both cell neighbor exchanges and cell divisions are suppressed and the tissue behaves more like an active solid. A striking example of this is the freshwater polyp Hydra, where topological defects in the muscle fiber orientation have been shown to localize to key features of the body plan. In this talk I will examine the behavior of active nematic solids, where the feedback between alignment, elasticity and biochemical signaling controls shape and structure.

 

Past Events

Jul 20 2022

Udo Seifert - From stochastic thermodynamics to thermodynamic inference

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Wednesday, July 20, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
Udo Seifert - Universitaet Stuttgart Wednesday, July 20, 10:45AM (Zoom meeting starts at 10:30) “From stochastic thermodynamics to thermodynamic inference” CLICK HERE TO VIEW RECORDING Stochastic thermodynamics provides a universal framework for analyzing nano- and micro-sized non-equilibrium systems. Prominent examples
Jul 13 2022

David R. Nelson - Geometrical frustration and fractional defect charges on cones

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Wednesday, July 13, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
David R. Nelson - Harvard University Wednesday, July 13, 10:45AM (Zoom meeting starts at 10:30) “Geometrical frustration and fractional defect charges on cones” CLICK HERE TO VIEW RECORDING The difficulty of constructing ordered states on spheres, an example of geometrical
Jul 06 2022

Scott Aaronson - Discrete Bulk Reconstruction

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Wednesday, July 6, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
Scott Aaronson - University of Texas at Austin Wednesday, July 6, 10:45AM (Zoom meeting starts at 10:30) “Discrete Bulk Reconstruction” CLICK HERE TO VIEW RECORDING The AdS/CFT correspondence posits a duality between quantum theories of gravity in anti-de-Sitter (AdS) universes,
Jun 29 2022

Steven M. Girvin - Adventures in Quantum Phase Space: Why Bosons are Better than Qubits for Quantum Error Correction

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Wednesday, June 29, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
Steven M. Girvin - Yale University Wednesday, June 29, 10:45AM (Zoom meeting starts at 10:30) “Adventures in Quantum Phase Space: Why Bosons are Better than Qubits for Quantum Error Correction” The fact that quantum error correction is possible in principle
Jun 22 2022

Sylvia Serfaty – Microscopic description of Coulomb gases

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Wednesday, June 22, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Sylvia Serfaty – New York University Wednesday, June 22, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW RECORDING “Microscopic description of Coulomb gases” We are interested in the statistical mechanics of systems of N points with Coulomb interactions
Jun 15 2022

Michael J. Shelley - Flows and instabilities in cellular biomechanics

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Wednesday, June 15, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
Michael J. Shelley - NYU Wednesday, June 15, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW RECORDING “Flows and instabilities in cellular biomechanics” Flows in the fluidic interior of living cells can serve function, and by their structure
Jun 08 2022

Maxim Kontsevich - Over-determined Schwinger-Dyson equations for matrix models

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Wednesday, June 8, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
Maxim Kontsevich - IHES Wednesday, June 8, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW RECORDING “Over-determined Schwinger-Dyson equations for matrix models” Observables in the planar limit of multi-matrix models satisfy an infinite system of quadratic equations, called
Jun 01 2022

Peter Constantin - On the Nernst-Planck-Navier-Stokes system

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Wednesday, June 1, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
Peter Constantin - Princeton University Wednesday, June 1, 10:45AM (Zoom meeting starts at 10:30) “On the Nernst-Planck-Navier-Stokes system” CLICK HERE TO VIEW RECORDING The NPNS system models the macroscopic evolution of ionic concentrations in electrically conducting fluids. I will present
May 25 2022

Sidney Nagel - Memory formation in out of equilibrium systems

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Wednesday, May 25, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Out-of-equilibrium systems preserve memories of their formation and training history in a variety of ways allowing for an innovative classification of material and dynamics. I will discuss one case where a cyclically sheared suspension of particles or a charge-density-wave solid
May 18 2022

Sriram Ramaswamy - Directions in Active Matter

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Wednesday, May 18, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
Sriram Ramaswamy - Indian Institute of Science Wednesday, May 18, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW RECORDING “Directions in Active Matter” Active matter is made of particles steadily supplied with free energy that they turn into
May 11 2022

Peter Fratzl -Simple mechanobiological models for tissue growth and regeneration

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Wednesday, May 11, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Peter Fratzl - Max Planck Institute of Colloids and Interfaces Wednesday, May 11, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW RECORDING “Simple mechanobiological models for tissue growth and regeneration” Tissue regeneration after fracture or injury is controlled
May 04 2022

Peter Wolynes - The Theory of Glasses: The Last Twenty Years (Mostly)

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Wednesday, May 4, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
Peter Wolynes - Rice University Wednesday, May 4, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW RECORDING “The Theory of Glasses: The Last Twenty Years (Mostly)” The mosaic picture of supercooled liquids and glasses based on an underlying
Apr 27 2022

Albert-László Barabási - Controlling Networks: Fundamentals and applications to brain science

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Wednesday, April 27, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Albert-László Barabási - Northeastern University and Harvard University Wednesday, April 27, 10:45AM (Zoom meeting starts at 10:30) “Controlling Networks: Fundamentals and applications to brain science” The ultimate proof of our understanding of biological or technological systems is reflected in our
Apr 20 2022

Jonathan Mattingly - A random forcing model of the 2D  fluid equations

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Wednesday, April 20, 2022
10:45 AM - 11:45 AM
Event Type: Mathematical Physics Webinar
Jonathan Mattingly - Duke University Wednesday, April 20, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW RECORDING “A random forcing model of the 2D fluid equations” Abstract: The Navier-Stokes and Euler equations describe the flow of a incompressible
Apr 13 2022

Jim Hudspeth - Making an effort to listen: mechanical amplification by ion channels and myosin molecules in hair cells of the inner ear

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Wednesday, April 13, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Jim Hudspeth - Rockefeller University Wednesday, April 13, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW SEMINAR RECORDING “Making an effort to listen: mechanical amplification by ion channels and myosin molecules in hair cells of the inner ear”
Apr 06 2022

Irene Giardina - Departure from equilibrium and signatures of irreversibility in flocking systems

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Wednesday, April 6, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Irene Giardina - Sapienza University of Rome Wednesday, April 6, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW SEMINAR RECORDING “Departure from equilibrium and signatures of irreversibility in flocking systems” Biological groups such as insect swarms and bird
Mar 30 2022

Yves Pomeau - Turbulence: from the basics to slightly beyond

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Wednesday, March 30, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Yves Pomeau - French National Centre for Scientific Research Wednesday, March 30, 10:45AM (Zoom meeting starts at 10:30) CLICK HERE TO VIEW RECORDING “Turbulence: from the basics to slightly beyond” In the landscape of physics, turbulence stands in a rather
Mar 23 2022

Jean-Pierre Eckmann - The predictive power of theoretical biology

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Wednesday, March 23, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Jean-Pierre Eckmann - University of Geneva Wednesday, March 23, 10:45AM (Zoom meeting starts at 10:30) “The predictive power of theoretical biology” CLICK HERE TO VIEW SEMINAR RECORDING Abstract: I will argue, supported by an experiment, that theoretical biology moves (very
Mar 16 2022

Tom Lubensky - Metamaterials and Topological Mechanics

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Wednesday, March 16, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Metamaterials and Topological Mechanics Tom Lubensky Department of Physics and Astronomy, University of Pennsylvania CLICK HERE TO VIEW RECORDING Metamaterials are engineered to have properties not found in nature, such as a negative optical index of refraction, one-way light or
Mar 09 2022

Ned Wingreen - Phase separation in biological cells

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Wednesday, March 9, 2022
10:45 AM - 11:45 AM
Zoom
Event Type: Mathematical Physics Webinar
Ned Wingreen – Princeton University CLICK HERE TO VIEW RECORDING Wednesday, March 9, 10:45AM (Zoom meeting starts at 10:30) “Phase separation in biological cells” An emerging mechanism for intracellular organization is biomolecular phase separation into condensates of proteins and nucleic