Format results
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Talk
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CMB Frontiers: dark energies, polarization, high resolution, non-Gaussianity
Richard Bond Canadian Institute for Theoretical Astrophysics (CITA)
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Dark forces and alternative BBN scenarios
Maxim Pospelov University of Minnesota
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Holographic Non-Gaussianity
Kostas Skenderis University of Southampton
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Talk
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Description of many-body systems using MPS, PEPS, and other families of states
Ignacio Cirac Max Planck Institute for Gravitational Physics - Albert Einstein Institute (AEI)
PIRSA:10050093 -
Grasping quantum many-body systems in terms of tensor networks
Jens Eisert Freie Universität Berlin
PIRSA:10050094 -
Unitary Equilibrations: Temporal and Hilbert Space Typicality Loschmidt Echo
Paolo Zanardi Institute for Scientific Interchange (ISI) Foundation
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A variational wave-function based method for simulating quantum field theories
Frank Verstraete Ghent University
PIRSA:10050065 -
Entanglement renormalization and gauge symmetry
Guifre Vidal Alphabet (United States)
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Quantum mechanical and information theoretic view on classical glass transitions
Claudio Chamon Boston College
PIRSA:10050067 -
Entanglement across a separation in spin chains: statics & dynamics
Sougato Bose University College London
PIRSA:10050068 -
Entanglement entropy in the O(N) model
Max Metlitski Massachusetts Institute of Technology (MIT) - Department of Physics
PIRSA:10050069
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Talk
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Laws, counterfactuals, fine-tuning and measurement
John Roberts University of North Carolina at Chapel Hill
PIRSA:10050050 -
What can we know of the world?
PIRSA:10050051 -
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Laws and time in cosmology
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Lee Smolin Perimeter Institute for Theoretical Physics
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Roberto Mangabeira Unger Harvard University
PIRSA:10050053 -
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The common symmetries underlying quantum theory, probability theory, and number systems
Philip Goyal State University of New York (SUNY)
PIRSA:10050055 -
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Talk
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A black hole uniqueness theorem
Spyros Alexakis University of Toronto
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Algebraically special solutions in higher dimensions
Harvey Reall University of Cambridge
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Lattice points in moduli spaces of curves
Norman Do McGill University
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Topological recursion and mirror symmetry
Vincent Bouchard University of Alberta
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On the notion quasilocal mass in general relativity
Mu-Tao Wang Columbia University
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Heterotic string and complex Monge-Ampere equation
Shing-Tung Yau Harvard University
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Talk
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Fingerprints of structure formation in the microwave background
Gilbert Holder University of Illinois Urbana-Champaign
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Optical Surveys of Large-Scale Structure
Jeffrey Newman University of Pittsburgh
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Testing gravity at cosmological scales: from linear to nonlinear regimes
Pengjie Zhang Shanghai Jiao Tong University
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Cosmic Acceleration: Dark Energy vs Modified Gravity
Wayne Hu University of Chicago
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Talk
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Spin-orbit physics in the Mott regime
Leon Balents University of California, Santa Barbara
PIRSA:10040079 -
NMR Investigation of Iron-Based High Tc Superconductors
Takashi Imai McMaster University
PIRSA:10040080 -
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Phase Transitions in Planar Pyrochlores
Bruce Gaulin Canadian Association of Physicists
PIRSA:10040083 -
Kinetics of Microstructural Transitions in Block Copolymer Melts
Robert Wickham University of Guelph
PIRSA:10040084 -
Electronic Structure of the Heavy-fermion Material URu2Si2
Mohammad Hamidian Cornell University
PIRSA:10040086 -
Fractional Quantum Hall Effect and Featureless Mott Insulators
Anton Burkov University of Waterloo
PIRSA:10040088
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Talk
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Review on Proposed Models for Dark Energy 2
Ghazal Geshnizjani Perimeter Institute for Theoretical Physics
PIRSA:10050012 -
Review on Proposed Models for Dark Energy 1
Ghazal Geshnizjani Perimeter Institute for Theoretical Physics
PIRSA:10050011 -
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Generation of Perturbations During Inflation
Adrienne Erickcek University of North Carolina at Chapel Hill
PIRSA:10040078 -
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Cosmological Perturbation Theory
Adrienne Erickcek University of North Carolina at Chapel Hill
PIRSA:10040076 -
Review of FRW Spacetime and Inflation
Adrienne Erickcek University of North Carolina at Chapel Hill
PIRSA:10040075
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Beyond the Standard Model Physics and the LHC (Lecture 2)
James Wells University of Michigan–Ann Arbor
PIRSA:10040024 -
Beyond the Standard Model Physics and the LHC (Lecture 1)
James Wells University of Michigan–Ann Arbor
PIRSA:10030062
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Talk
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Lost in the Observational Cosmology Lab: What a Theorist does at NASA
Chanda Prescod-Weinstein University of New Hampshire
PIRSA:10030059
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Talk
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Lecture 5: Surface operators in N=2 theories: Generalized SW geometry, 2d-4d wallcrossing
Davide Gaiotto Perimeter Institute for Theoretical Physics
PIRSA:10020077 -
Lecture 4: Line Operators in N=2 Gauge Theories: wallcrossing, relation to Hitchin systems
Davide Gaiotto Perimeter Institute for Theoretical Physics
PIRSA:10020076 -
Lecture 3: 6d Engineering of N=2 theories. S-dualities
Davide Gaiotto Perimeter Institute for Theoretical Physics
PIRSA:10020075 -
Lecture 2: SW solution of gauge theory with matter
Davide Gaiotto Perimeter Institute for Theoretical Physics
PIRSA:10020074 -
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Talk
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Aspects of Moduli in String Compactifications - Lecture 3
Joseph Conlon University of Oxford
PIRSA:10010101 -
Aspects of Moduli in String Compactifications - Lecture 2
Joseph Conlon University of Oxford
PIRSA:10010100 -
Aspects of Moduli in String Compactifications - Lecture 1
Joseph Conlon University of Oxford
PIRSA:10010099
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Talk
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Cosmological Frontiers in Fundamental Physics - 2010
Cosmological Frontiers in Fundamental Physics -
Emergence and Entanglement - 2010
Emergence and Entanglement -
Laws of Nature: Their Nature and Knowability - 2010
Laws of Nature: Their Nature and Knowability -
Connections in Geometry and Physics 2010
Connections in Geometry and Physics 2010 -
Fundamental Physics and Large Scale Structure (2010)
Fundamental Physics and Large Scale Structure -
4-Corner Southwest Ontario Condensed Matter Symposium 2010
4-Corner Southwest Ontario Condensed Matter Symposium 2010 -
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Beyond the Standard Model Physics and the LHC
These three lectures cover several ideas of physics beyond the Standard Model. My focus is on ideas that give a natural stabilization solution to the electroweak scale, which is mysteriously light compared to the gravitational Planck scale. These ideas include supersymmetric field theories, extra dimensions, and Higgs boson physics. I shall describe what I think are the "best bets" among these approaches, and more importantly the ways they can be discerned by experiment. Special emphasis will be on theories that can be confirmed at the Large Hadron Collider (LHC) that is just now starting. -
Young Researchers Symposium
Young Researchers Symposium - Chanda Prescod-Weinstein -
New Developments in N=2 Supersymmetric Gauge Theories
Minicourse - Davide Gaiotto -
Aspects of Moduli in String Compactifications
Mini course by Joe Conlon -
Quantum Field Theory for Cosmology
This course begins with a thorough introduction to quantum field theory. Unlike the usual quantum field theory courses which aim at applications to particle physics, this course then focuses on those quantum field theoretic techniques that are important in the presence of gravity. In particular, this course introduces the properties of quantum fluctuations of fields and how they are affected by curvature and by gravitational horizons. We will cover the highly successful inflationary explanation of the fluctuation spectrum of the cosmic microwave background - and therefore the modern understanding of the quantum origin of all inhomogeneities in the universe (see these amazing visualizations from the data of the Sloan Digital Sky Survey. They display the inhomogeneous distribution of galaxies several billion light years into the universe. Organizer: Achim Kempf