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Holography, de Sitter space and SUSY breaking
Holography, de Sitter space and SUSY breaking

8. Quantum field theory on the lattice
8. Quantum field theory on the lattice

... h0|Γ(0)|E0i. → measure masses (E0) from the exponential fall-off of correlation functions. ...
Gregory Moore - Rutgers Physics
Gregory Moore - Rutgers Physics

... + Many connections to mathematics …. They are special ``cluster coordinates’’ on a manifold M closely related to M Moreover, we can construct explicit solutions to Einstein’s equations on M using these functions. ...
Introduction to Strings
Introduction to Strings

... • Strings are one dimensionally extended objects • There are closed strings and open strings • Strings sweep two dimensional world sheets as they propagate t ...
symmetry - Yuri Balashov
symmetry - Yuri Balashov

... However, one could think of symbioses as involving groups of organisms, such as oxygen-breathing animals and oxygen-generating plants in a pond community. In principle, this could be extended to communities interacting in an ecosystem, or global ecosystems interacting with each other on a planetary ...
String theory and the origin of the universe—new idea, old problem
String theory and the origin of the universe—new idea, old problem

... of very strange ideas. For example, the universe consists of nine or ten spatial dimensions, along with the one dimension of time.3 Furthermore, all forces arise from the same underlying force (just as electricity, magnetism and the weak force are already known to be interrelated). The properties of ...
Notes
Notes

... Lorentz scalar so that the theory is Lorentz invariant. Add one more requirement that the Lagrangian contains at most two space-time derivatives. We can conclude the most general Lagrangian is written as in Eq. (2.6) on P.3. Derive its Euler Eq. and we get (2.7). It’s called Klein-Gorden Equation. 5 ...
String Theory - Santa Rosa Junior College
String Theory - Santa Rosa Junior College

... Some ideas originate from early 20th century German Mathematician Theodor Kaluza notes general relativity in 5 dimensinos describes both gravity and electromagnatism in 4 (1919)  Swedish physicist Oskar Klein suggests extra dimensions can exist if understood as being “wrapped” into a small circle ( ...
Solution Set 8 Worldsheet perspective on CY compactification
Solution Set 8 Worldsheet perspective on CY compactification

... (c) [BONUS] Note that the orbifolded theory has a new global discrete symmetry, called the quantum symmetry (not my fault), which acts with a phase αk on the sector twisted by ω k . This symmetry constrains the interactions of the orbifold theory. What can you say about the theory you get by orbifol ...
Thermal properties of solids
Thermal properties of solids

Transparancies for Feynman Graphs
Transparancies for Feynman Graphs

... • The amplitude T is the sum of all amplitudes from all possible diagrams Feynman graphs are calculational tools, they have terms associated with them Each vertex involves the emag coupling (=1/137) in its amplitude So, we have a perturbation series – only lowest order terms needed More precision  ...
Document
Document

Theoretical Particle
Theoretical Particle

... D-branes, one can count the number of quantum states of black holes. (Strominger and Vafa 1996)  This holds for the so called supersymmetric black holes where the number of states do not change as the coupling varies. ...
My first paper - Konfluence Research Institute
My first paper - Konfluence Research Institute

... coupling. While the field equations of this theory were studied extensively, the equations of motion have received less attention. The equations of motion are revisited here, and it is shown that the theory does predict electromagnetic corrections to Newtonian gravity which do not couple to electric ...
Bilbao - INFN - Sezione di Firenze
Bilbao - INFN - Sezione di Firenze

... The challenge: convert a beautiful theoretical/mathematical framework into something predictive ... and testable. Many unresolved puzzles in gravitation and cosmology (big bang, black holes, cosm..) probably do need a consistent way to combine GR and QM Insisting on theoretical consistency has paid ...
LOYOLA COLLEGE (AUTONOMOUS), CHENNAI – 600 034
LOYOLA COLLEGE (AUTONOMOUS), CHENNAI – 600 034

Unified Field Theory
Unified Field Theory

Geometry and tensor networks
Geometry and tensor networks

... Geometry and tensor networks: Tensor networks (or more generally, diagrams in monoidal categories with various additional properties) arise constantly in applications, particularly those involving networks used to process information in some way. Aided by the easy interpretation of the graphical lan ...
Basics of Lattice Quantum Field Theory∗
Basics of Lattice Quantum Field Theory∗

15.06.18_CAP-Edmonton-CWL
15.06.18_CAP-Edmonton-CWL

... (3) Another thing that is often forgotten, but is also essentially quantum-mechanical, ...
Physics Beyond the Standard Model
Physics Beyond the Standard Model

... Physics Beyond the Standard Model Summary by Dennis Silverman Physics and Astronomy UC Irvine ...
What lies beyond? - University of Toronto Physics
What lies beyond? - University of Toronto Physics

Particle physics, from Rutherford to the LHC
Particle physics, from Rutherford to the LHC

... beta decay, with vector currents supplemented with axial vector currents. But when that theory was carried beyond the lowest order of perturbation theory, it gave infinities that apparently could not be removed by renormalization. ...
幻灯片 1 - 中国科学院理论物理研究所
幻灯片 1 - 中国科学院理论物理研究所

string theory.
string theory.

... Which of these interactions doesn’t belong? ...
< 1 ... 64 65 66 67 68 69 70 71 72 ... 75 >

Yang–Mills theory

Yang–Mills theory is a gauge theory based on the SU(N) group, or more generally any compact, semi-simple Lie group. Yang–Mills theory seeks to describe the behavior of elementary particles using these non-Abelian Lie groups and is at the core of the unification of the electromagnetic and weak forces (i.e. U(1) × SU(2)) as well as quantum chromodynamics, the theory of the strong force (based on SU(3)). Thus it forms the basis of our understanding of particle physics, the Standard Model.
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