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Letters in mathematical physics, ISSN 0377-9017, 2/2018, Volume 108, Issue 2, pp. 391 - 412

Starting from the Schwinger–Dyson equation and the renormalization group equation for the massless Wess...

Theoretical, Mathematical and Computational Physics | Complex Systems | Borel transform | Accelero–summation | 81T16 | Physics | Geometry | Alien calculus | Schwinger–Dyson equation | 81Q40 | 40G10 | Group Theory and Generalizations | Renormalization | Physical Sciences | Physics, Mathematical | Science & Technology | Calculus | Field theory | Singularities | Mathematical analysis | Quantum field theory | Quantum theory | Mathematical Physics | High Energy Physics - Theory

Theoretical, Mathematical and Computational Physics | Complex Systems | Borel transform | Accelero–summation | 81T16 | Physics | Geometry | Alien calculus | Schwinger–Dyson equation | 81Q40 | 40G10 | Group Theory and Generalizations | Renormalization | Physical Sciences | Physics, Mathematical | Science & Technology | Calculus | Field theory | Singularities | Mathematical analysis | Quantum field theory | Quantum theory | Mathematical Physics | High Energy Physics - Theory

Journal Article

Physics reports, ISSN 0370-1573, 08/2009, Volume 479, Issue 1-6, pp. 1 - 152

We review the theoretical foundations and the most important physical applications of the Pinch Technique (PT). This general method allows the construction of...

Greens functions | Schwinger–Dyson equations | Non-Abelian gauge theories | Gluons | Gauge bosons | Dynamical mass generation | Gauge-invariance | Schwinger-Dyson equations | Physics, Multidisciplinary | Physical Sciences | Physics | Science & Technology

Greens functions | Schwinger–Dyson equations | Non-Abelian gauge theories | Gluons | Gauge bosons | Dynamical mass generation | Gauge-invariance | Schwinger-Dyson equations | Physics, Multidisciplinary | Physical Sciences | Physics | Science & Technology

Journal Article

Letters in mathematical physics, ISSN 0377-9017, 8/2013, Volume 103, Issue 8, pp. 881 - 893

We consider the effects of higher loop corrections to a Schwinger–Dyson equation for propagators...

Geometry | 81T15 | Schwinger–Dyson equation | Theoretical, Mathematical and Computational Physics | renormalization | Group Theory and Generalizations | Statistical Physics, Dynamical Systems and Complexity | 81T17 | Physics | Schwinger-Dyson equation | Physical Sciences | Physics, Mathematical | Science & Technology | High Energy Physics - Phenomenology | Mathematics | Mathematical Physics | High Energy Physics - Theory

Geometry | 81T15 | Schwinger–Dyson equation | Theoretical, Mathematical and Computational Physics | renormalization | Group Theory and Generalizations | Statistical Physics, Dynamical Systems and Complexity | 81T17 | Physics | Schwinger-Dyson equation | Physical Sciences | Physics, Mathematical | Science & Technology | High Energy Physics - Phenomenology | Mathematics | Mathematical Physics | High Energy Physics - Theory

Journal Article

Nuclear physics. B, ISSN 0550-3213, 2009, Volume 811, Issue 3, pp. 519 - 536

Stationary distributions of complex Langevin equations are shown to be the complexified path integral solutions of the Schwinger...

Schwinger–Dyson equations | Complex Langevin equation | Schwinger-Dyson equations | Physical Sciences | Physics, Particles & Fields | Physics | Science & Technology

Schwinger–Dyson equations | Complex Langevin equation | Schwinger-Dyson equations | Physical Sciences | Physics, Particles & Fields | Physics | Science & Technology

Journal Article

Physics letters. B, ISSN 0370-2693, 12/2013, Volume 727, Issue 4-5, pp. 541 - 547

...–Dyson equations resums these infrared logarithms into power laws. We provide an exact analytical solution of the Schwinger...

Quantum field theory | De Sitter space | Schwinger–Dyson equations | Schwinger-Dyson equations | Physical Sciences | Physics, Nuclear | Astronomy & Astrophysics | Physics, Particles & Fields | Physics | Science & Technology | Perturbation theory | Infrared | Asymptotic properties | Mathematical analysis | Elementary particles | Insertion | Scalars | Power law | Astrophysics | General Relativity and Quantum Cosmology | High Energy Physics - Phenomenology | Nuclear Theory | High Energy Physics - Theory

Quantum field theory | De Sitter space | Schwinger–Dyson equations | Schwinger-Dyson equations | Physical Sciences | Physics, Nuclear | Astronomy & Astrophysics | Physics, Particles & Fields | Physics | Science & Technology | Perturbation theory | Infrared | Asymptotic properties | Mathematical analysis | Elementary particles | Insertion | Scalars | Power law | Astrophysics | General Relativity and Quantum Cosmology | High Energy Physics - Phenomenology | Nuclear Theory | High Energy Physics - Theory

Journal Article

Journal of physics. A, Mathematical and theoretical, ISSN 1751-8121, 01/2019, Volume 52, Issue 3, p. 035201

The complex Langevin (CL) method sometimes shows convergence to the wrong limit, even though the Schwinger-Dyson equations (SDE) are fulfilled...

sign problem | complex Langevin | Schwinger-Dyson equations | Physics, Multidisciplinary | Physical Sciences | Physics | Physics, Mathematical | Science & Technology

sign problem | complex Langevin | Schwinger-Dyson equations | Physics, Multidisciplinary | Physical Sciences | Physics | Physics, Mathematical | Science & Technology

Journal Article

Classical and quantum gravity, ISSN 1361-6382, 09/2014, Volume 31, Issue 18, pp. 185005 - 29

In this paper, we provide the closed equations that satisfy two-point correlation functions of rank 3 and 4 tensorial group field theory...

tensorial group field theory | two-point correlation functions | Schwinger-Dyson equation | Ward-Takahashi identities | renormalization | Quantum Science & Technology | Physical Sciences | Astronomy & Astrophysics | Physics, Particles & Fields | Physics, Multidisciplinary | Physics | Science & Technology | Tensors | Integral equations | Mathematical analysis | Constants | Field theory | Joining | Quantum gravity | Three dimensional | Physics - High Energy Physics - Theory

tensorial group field theory | two-point correlation functions | Schwinger-Dyson equation | Ward-Takahashi identities | renormalization | Quantum Science & Technology | Physical Sciences | Astronomy & Astrophysics | Physics, Particles & Fields | Physics, Multidisciplinary | Physics | Science & Technology | Tensors | Integral equations | Mathematical analysis | Constants | Field theory | Joining | Quantum gravity | Three dimensional | Physics - High Energy Physics - Theory

Journal Article

Physics letters. B, ISSN 0370-2693, 03/2004, Volume 584, Issue 1-2, pp. 71 - 80

...–Salpeter equation with the confining effective potential (infrared modified flat bottom potential...

Decay constant | Confinement | Dynamical symmetry breaking | Schwinger–Dyson equation | Bethe–Salpeter equation | 11.10.Gh | 11.10.St | 12.40.Qq | 14.40.-n | Schwinger-Dyson equation | Bethe-Salpeter equation | Physical Sciences | Physics, Nuclear | Astronomy & Astrophysics | Physics, Particles & Fields | Physics | Science & Technology | Physics - High Energy Physics - Phenomenology

Decay constant | Confinement | Dynamical symmetry breaking | Schwinger–Dyson equation | Bethe–Salpeter equation | 11.10.Gh | 11.10.St | 12.40.Qq | 14.40.-n | Schwinger-Dyson equation | Bethe-Salpeter equation | Physical Sciences | Physics, Nuclear | Astronomy & Astrophysics | Physics, Particles & Fields | Physics | Science & Technology | Physics - High Energy Physics - Phenomenology

Journal Article

9.
Full Text
CONVERGENCE OF THE LARGEST SINGULAR VALUE OF A POLYNOMIAL IN INDEPENDENT WIGNER MATRICES

The Annals of probability, ISSN 0091-1798, 5/2013, Volume 41, Issue 3, pp. 2103 - 2181

For polynomials in independent Wigner matrices, we prove convergence of the largest singular value to the operator norm of the corresponding polynomial in free...

Integers | Tensors | Algebra | Mathematical theorems | Eigenvalues | Polynomials | Random variables | Matrix identities | Linearization | Tunnels | Singular values | Schwinger-Dyson equation | Support | Wigner matrices | Noncommutative polynomials | Spectrum | Statistics & Probability | Physical Sciences | Mathematics | Science & Technology | Studies | Matrix | Mathematical analysis | Probability distribution | Estimating techniques | Eigen values | 15B52 | Schwinger–Dyson equation | spectrum | 60B20 | singular values | support

Integers | Tensors | Algebra | Mathematical theorems | Eigenvalues | Polynomials | Random variables | Matrix identities | Linearization | Tunnels | Singular values | Schwinger-Dyson equation | Support | Wigner matrices | Noncommutative polynomials | Spectrum | Statistics & Probability | Physical Sciences | Mathematics | Science & Technology | Studies | Matrix | Mathematical analysis | Probability distribution | Estimating techniques | Eigen values | 15B52 | Schwinger–Dyson equation | spectrum | 60B20 | singular values | support

Journal Article

Letters in mathematical physics, ISSN 0377-9017, 6/2015, Volume 105, Issue 6, pp. 779 - 794

Using kinematic renormalization, we derive the Schwinger–Dyson equations for a massive Yukawa model and a Wess–Zumino-like one...

Geometry | Schwinger–Dyson equations | Theoretical, Mathematical and Computational Physics | renormalization | 81Q40 | Group Theory and Generalizations | Statistical Physics, Dynamical Systems and Complexity | 81T16 | 81T17 | Physics | Schwinger-Dyson equations | Physical Sciences | Physics, Mathematical | Science & Technology

Geometry | Schwinger–Dyson equations | Theoretical, Mathematical and Computational Physics | renormalization | 81Q40 | Group Theory and Generalizations | Statistical Physics, Dynamical Systems and Complexity | 81T16 | 81T17 | Physics | Schwinger-Dyson equations | Physical Sciences | Physics, Mathematical | Science & Technology

Journal Article

Nuclear physics. B, ISSN 0550-3213, 2009, Volume 822, Issue 3, pp. 349 - 366

We construct an effective potential for the complex Langevin equation on a lattice...

Schwinger–Dyson equations | Complex Langevin equation | Schwinger-Dyson equations | Physical Sciences | Physics, Particles & Fields | Physics | Science & Technology

Schwinger–Dyson equations | Complex Langevin equation | Schwinger-Dyson equations | Physical Sciences | Physics, Particles & Fields | Physics | Science & Technology

Journal Article

Frontiers of physics, ISSN 2095-0470, 02/2016, Volume 11, Issue 2, pp. 1 - 18

.... In particular, we concentrate on the Schwinger–Dyson equation satisfied by the gluon propagator and examine the necessary conditions for obtaining finite solutions within the infrared region...

Condensed Matter Physics | Schwinger–Dyson equations | nonperturbative physics | Atomic, Molecular, Optical and Plasma Physics | dynamical mass generation | Physics | Particle and Nuclear Physics | Astronomy, Astrophysics and Cosmology | Physics, Multidisciplinary | Physical Sciences | Science & Technology | Analysis | Nuclear physics

Condensed Matter Physics | Schwinger–Dyson equations | nonperturbative physics | Atomic, Molecular, Optical and Plasma Physics | dynamical mass generation | Physics | Particle and Nuclear Physics | Astronomy, Astrophysics and Cosmology | Physics, Multidisciplinary | Physical Sciences | Science & Technology | Analysis | Nuclear physics

Journal Article