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atomic physics (phys4011) lecture notes
atomic physics (phys4011) lecture notes

Quantum Transport through Single and Double Quantum Dots
Quantum Transport through Single and Double Quantum Dots

The information paradox: A pedagogical introduction Samir D. Mathur Department of Physics,
The information paradox: A pedagogical introduction Samir D. Mathur Department of Physics,

... N containing a small parameter ǫ such that when ǫ is made arbitrarily small then physics can be described to arbitrarily high accuracy by a known, local, evolution equation. That is, under conditions N we can specify the quantum state on an initial spacelike slice, and then a Hamiltonian evolution o ...
pdf
pdf

... a numerical integrator that preserve the geometric structure. It is worth noting that Heller [20] decouples the classical and quantum parts of the dynamics and only recognizes the classical part as a Hamiltonian system, whereas Faou and Lubich [10] show that the whole system is Hamiltonian. 1.2. Mai ...
Transient Electromagnetic Waves in Nonlinear Media Sjöberg, Daniel
Transient Electromagnetic Waves in Nonlinear Media Sjöberg, Daniel

Quantum Faraday effect in graphene within relativistic Dirac model
Quantum Faraday effect in graphene within relativistic Dirac model

Correlations in multipartite systems: From entanglement to localization Julia Stasi ´nska
Correlations in multipartite systems: From entanglement to localization Julia Stasi ´nska

... This thesis deals with the study of multipartite correlations in various physical systems such as atomic ensembles of non-interacting atoms, systems of interacting spins and disordered Bose gas in an optical lattice. In each case I emphasize a different aspect of this broad concept. First, I concent ...
Applications of perturbation theory in black hole physics Paolo Pani
Applications of perturbation theory in black hole physics Paolo Pani

Applications of perturbation theory in black hole physics Paolo Pani
Applications of perturbation theory in black hole physics Paolo Pani

... ultra-high energy cosmic rays in the atmosphere and might also be created in high-energy particle collisions at the Large Hadron Collider, which has recently started collecting data. However, the question whether black holes exist in nature, and the corresponding wealth of information that their exi ...
Martin - Nuclear and Particle Physics
Martin - Nuclear and Particle Physics

... physics, covering the traditional topics in non-relativistic quantum mechanics and atomic physics. A few lectures on relativistic kinematics would also be useful, but this is not essential as the necessary background is given in appendix B and is only used in a few places in the book. I have not tri ...
DEVELOPMENT, IMPLEMENTATION AND APPLICATION OF ELECTRONIC STRUCTURAL DESCRIPTORS TO THE
DEVELOPMENT, IMPLEMENTATION AND APPLICATION OF ELECTRONIC STRUCTURAL DESCRIPTORS TO THE

... The advent of quantum mechanics supposed a Copernican turn not only for classical physicists, but also for the whole chemistry society. It meant a general breakdown of the understanding of rules that govern the matter behavior. Concepts like the Max Planck’s quantization of energy, Erwin Schrödinger ...
Many Body Physics
Many Body Physics

CHM313 - National Open University of Nigeria
CHM313 - National Open University of Nigeria

... One is a bonding orbital, lower in energy than the atomic orbitals, and derived from their sum. It is called sigma. The other is an antibonding orbital, higher in energy than the atomic orbitals, and resulting from their difference. In Module 3, the first unit focuses on introduction to quantum chem ...
Lectures on Quantum Mechanics (nonlinear PDE point of view)
Lectures on Quantum Mechanics (nonlinear PDE point of view)

... We expose the Schrödinger quantum mechanics with traditional applications to Hydrogen atom: the calculation of the Hydrogen atom spectrum via Schrödinger, Pauli and Dirac equations, the Heisenberg representation, the selection rules, the calculation of quantum and classical scattering of light (Th ...
arXiv:1601.06197v1 [cond-mat.quant
arXiv:1601.06197v1 [cond-mat.quant

... energy modes in the non-condensed phase, development of an instability that leads to nucleation of the condensate and a subsequent build-up of coherence, and finally condensate growth and phase ordering. In the midst of increasingly intensive e↵orts to achieve Bose condensation in dilute atomic gase ...
Engineering a Robust Quantum Spin Hall State in Graphene via
Engineering a Robust Quantum Spin Hall State in Graphene via

Electromagnetic Field Theory
Electromagnetic Field Theory

Resonant Magnetization Tunneling in Molecular Magnets
Resonant Magnetization Tunneling in Molecular Magnets

Nanomechanical shuttle transfer of electrons
Nanomechanical shuttle transfer of electrons

History of Western Philosophy from the quantum theoretical point of
History of Western Philosophy from the quantum theoretical point of

diatomic molecular spectroscopy with standard and anomalous
diatomic molecular spectroscopy with standard and anomalous

... 1. INTRODUCTION Although Van Vleck's reversed angular momentum technique [1] is little used today, the anomalous angular momentum commutators [2] upon which it was based still appear in current texts [3 – 5]. In this review, we show that the standard quantum theory of angular momentum fully accounts ...
Chapter 4: Variable Range Hopping Conduction
Chapter 4: Variable Range Hopping Conduction

Gravito-electromagnetic analogies
Gravito-electromagnetic analogies

... This work has two main goals: one is to establish the connection between the several gravitoelectromagnetic analogies existing in the literature, summarizing the main results and insights offered by each of them; the second is to further develop and extend some of these analogies. In an earlier work ...
Theory of resonance Raman scattering and fluorescence from
Theory of resonance Raman scattering and fluorescence from

Superconducting Qubits and the Physics of Josephson Junctions
Superconducting Qubits and the Physics of Josephson Junctions

< 1 ... 17 18 19 20 21 22 23 24 25 ... 562 >

History of quantum field theory

In particle physics, the history of quantum field theory starts with its creation by Paul Dirac, when he attempted to quantize the electromagnetic field in the late 1920s. Major advances in the theory were made in the 1950s, and led to the introduction of quantum electrodynamics (QED). QED was so successful and ""natural"" that efforts were made to use the same basic concepts for the other forces of nature. These efforts were successful in the application of gauge theory to the strong nuclear force and weak nuclear force, producing the modern standard model of particle physics. Efforts to describe gravity using the same techniques have, to date, failed. The study of quantum field theory is alive and flourishing, as are applications of this method to many physical problems. It remains one of the most vital areas of theoretical physics today, providing a common language to many branches of physics.
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