Format results
-
Introduction to Quantum Information
Robin Blume-Kohout - Sandia National Laboratories
-
A quantum view on locality, realism and information.
Tomasz Paterek - Nanyang Technological University - School of Physical and Mathematical Sciences
-
-
Warped extra dimensions and partial compositeness
Brian Batell - University of Pittsburgh
-
-
-
-
Entangling Power of an Expanding Universe
Nicolas Menicucci - Royal Melbourne Institute of Technology University (RMIT)
-
Phase transition of computational power of measurement-based quantum computer
Akimasa Miyake - University of New Mexico
-
Gravitons and black holes in loop quantum gravity.
Leonardo Modesto - Southern University of Science and Technology (SUSTech)
-
-
Gravitational Radiation from Preheating
John Giblin - Kenyon College
-
-
A quantum view on locality, realism and information.
Tomasz Paterek - Nanyang Technological University - School of Physical and Mathematical Sciences
First, a brief description of Bell\'s theorem will be given. It states states that there is no classical-like (local realistic) description of all quantum predictions. Next, a plausible class of non-local realistic models will be presented which is incompatible with quantum mechanics, as first shown… -
-
Warped extra dimensions and partial compositeness
Brian Batell - University of Pittsburgh
Strong gauge dynamics can be given a holographic description in terms of a warped extra dimension. In particular, Randall-Sundrum models with bulk fields are dual to Standard Model partial compositeness. We identify a holographic basis of 4D fields that allows for a quantitative description of the… -
-
Cosmic Strings from Supersymmetric Flat Directions
David Morrissey - TRIUMF
Cosmic strings are non-trivial configurations of scalar (and vector) fields that are stable on account of a topological conservation law. They can be formed in the early universe as it cools after the Big Bang. The scalar fields required to form cosmic strings arise naturally if Nature is… -
Higgs Effective Field Theories for LHC
We demonstrate a number of effective field theory constructions developed to capture the effects of new physics on the Higgs sector of the standard model. We demonstrate that as the self couplings of the Higgs could be significantly effected by new physics, novel phenomenology such as a two Higgs… -
Entangling Power of an Expanding Universe
Nicolas Menicucci - Royal Melbourne Institute of Technology University (RMIT)
Quantum fields in the Minkowski vacuum are entangled with respect to local field modes. This entanglement can be swapped to spatially separated quantum systems using standard local couplings. A single, inertial field detector in the exponentially expanding (de Sitter) vacuum responds as if it were… -
Phase transition of computational power of measurement-based quantum computer
Akimasa Miyake - University of New Mexico
One of the most significant questions in quantum information is about the origin of the computational power of the quantum computer; namely, from which feature of quantum mechanics and how does the quantum computer obtain its superior computational potential compared with the classical computer? In… -
Gravitons and black holes in loop quantum gravity.
Leonardo Modesto - Southern University of Science and Technology (SUSTech)
In the first part of the talk we introduce a technique to compute large scale correlations in LQG and spinfoam models. Using this formalism we calculate some components of the graviton propagator and of the n-points function. In the second part we apply the ideas suggested by LQG to the black hole… -
-