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Static electric dipole moments of nondegenerate systems probe mass scales for physics beyond the Standard Model well beyond those reached directly at high energy colliders. Discrimination between different physics models, however, requires…

High Energy Physics - Phenomenology · Physics 2022-04-05 Ricardo Alarcon , Jim Alexander , Vassilis Anastassopoulos , Takatoshi Aoki , Rick Baartman , Stefan Baeßler , Larry Bartoszek , Douglas H. Beck , Franco Bedeschi , Robert Berger , Martin Berz , Hendrick L. Bethlem , Tanmoy Bhattacharya , Michael Blaskiewicz , Thomas Blum , Themis Bowcock , Anastasia Borschevsky , Kevin Brown , Dmitry Budker , Sergey Burdin , Brendan C. Casey , Gianluigi Casse , Giovanni Cantatore , Lan Cheng , Timothy Chupp , Vince Cianciolo , Vincenzo Cirigliano , Steven M. Clayton , Chris Crawford , B. P. Das , Hooman Davoudiasl , Jordy de Vries , David DeMille , Dmitri Denisov , Milind V. Diwan , John M. Doyle , Jonathan Engel , George Fanourakis , Renee Fatemi , Bradley W. Filippone , Victor V. Flambaum , Timo Fleig , Nadia Fomin , Wolfram Fischer , Gerald Gabrielse , R. F. Garcia Ruiz , Antonios Gardikiotis , Claudio Gatti , Andrew Geraci , James Gooding , Bob Golub , Peter Graham , Frederick Gray , W. Clark Griffith , Selcuk Haciomeroglu , Gerald Gwinner , Steven Hoekstra , Georg H. Hoffstaetter , Haixin Huang , Nicholas R. Hutzler , Marco Incagli , Takeyasu M. Ito , Taku Izubuchi , Andrew M. Jayich , Hoyong Jeong , David Kaplan , Marin Karuza , David Kawall , On Kim , Ivan Koop , Wolfgang Korsch , Ekaterina Korobkina , Valeri Lebedev , Jonathan Lee , Soohyung Lee , Ralf Lehnert , Kent K. H. Leung , Chen-Yu Liu , Joshua Long , Alberto Lusiani , William J. Marciano , Marios Maroudas , Andrei Matlashov , Nobuyuki Matsumoto , Richard Mawhorter , Francois Meot , Emanuele Mereghetti , James P. Miller , William M. Morse , James Mott , Zhanibek Omarov , Luis A. Orozco , Christopher M. O'Shaughnessy , Cenap Ozben , SeongTae Park , Robert W. Pattie , Alexander N. Petrov , Giovanni Maria Piacentino , Bradley R. Plaster , Boris Podobedov , Matthew Poelker , Dinko Pocanic , V. S. Prasannaa , Joe Price , Michael J. Ramsey-Musolf , Deepak Raparia , Surjeet Rajendran , Matthew Reece , Austin Reid , Sergio Rescia , Adam Ritz , B. Lee Roberts , Marianna S. Safronova , Yasuhiro Sakemi , Philipp Schmidt-Wellenburg , Andrea Shindler , Yannis K. Semertzidis , Alexander Silenko , Jaideep T. Singh , Leonid V. Skripnikov , Amarjit Soni , Edward Stephenson , Riad Suleiman , Ayaki Sunaga , Michael Syphers , Sergey Syritsyn , M. R. Tarbutt , Pia Thoerngren , Rob G. E. Timmermans , Volodya Tishchenko , Anatoly V. Titov , Nikolaos Tsoupas , Spyros Tzamarias , Alessandro Variola , Graziano Venanzoni , Eva Vilella , Joost Vossebeld , Peter Winter , Eunil Won , Anatoli Zelenski , Tanya Zelevinsky , Yan Zhou , Konstantin Zioutas

This is a theoretical review of exploration of new physics beyond the Standard Model (SM) in electric dipole moment (EDM) in elementary particles, atoms, and molecule. EDM is a very important CP violating phenomenon and sensitive to new…

High Energy Physics - Phenomenology · Physics 2015-06-03 Takeshi Fukuyama

A specific class of flat Emergent Universe (EU) is considered and its viability is tested in view of the recent observations. Model parameters are constrained from Stern data for Hubble Parameter and Redshift ($H(z)$ vs. $z$) and from a…

Cosmology and Nongalactic Astrophysics · Physics 2015-03-17 B. C. Paul , S. Ghose , P. Thakur

We report a novel kind of dodecagonal quasicrystal that has so far never been observed, nor theoretically predicted. It is composed of axially stacked hexagonal particle layers, with 12-fold rotational symmetry induced by 30 degrees…

Soft Condensed Matter · Physics 2015-04-16 Alfredo Metere , Peter Oleynikov , Mikhail Dzugutov , Sven Lidin

There are three kinds of solid states of matter that can exist in physical space: quasicrystalline (quasiperiodic), crystalline (periodic) and amorphous (aperiodic). Herein, we consider the degree of orientational order that develops upon…

Materials Science · Physics 2019-07-30 Caroline S. Gorham , David E. Laughlin

Spontaneous symmetry breaking is one of the central organizing principles in physics. Time crystals have emerged as an exotic phase of matter, spontaneously breaking the time translational symmetry, and are mainly categorized as discrete or…

Quantum Physics · Physics 2026-01-16 Jan Carlo Schumann , Igor Lesanovsky , Parvinder Solanki

A fractal approach to numerical analysis of electromagnetic space-time crystals, created by three standing plane harmonic waves with mutually orthogonal phase planes and the same frequency, is presented. Finite models of electromagnetic…

Quantum Physics · Physics 2014-10-21 G. N. Borzdov

Many extensions of the Standard Model predict large numbers of additional unstable particles whose decays in the early universe are tightly constrained by observational data. For example, the decays of such particles can alter the ratios of…

High Energy Physics - Phenomenology · Physics 2019-02-20 Keith R. Dienes , Jason Kumar , Patrick Stengel , Brooks Thomas

The experiments conducted by various scientific groups indicate that, in dense two-dimensional systems of elongated particles subjected to vibration, the pattern formation is possible. Computer simulations have evidenced that the random…

In this paper some piecewise smooth perturbations of a three-dimensional differential system are considered. The existence of invariant manifolds filled by periodic orbits is obtained after suitable small perturbations of the original…

Dynamical Systems · Mathematics 2020-12-29 Claudio A. Buzzi , Rodrigo D. Euzébio , Ana C. Mereu

Indistinguishability of particles is normally considered to be an inherently quantum property which cannot be possessed by a classical theory. However, Saunders has argued that this is incorrect, and that classically indistinguishable…

Statistical Mechanics · Physics 2007-05-23 Daniel Gottesman

A theory of self-propelled particles is developed in two dimensions assuming that the particles can be deformed from a circular shape when the propagating velocity is increased. A coupled set of equations in terms of the velocity and a…

Soft Condensed Matter · Physics 2015-05-13 Takao Ohta , Takahiro Ohkuma

The rapid progress in precisely designing the surface decoration of patchy colloidal particles offers a new, yet unexperienced freedom to create building entities for larger, more complex structures in soft matter systems. However, it is…

Soft Condensed Matter · Physics 2012-06-14 G. Doppelbauer , E. G. Noya , E. Bianchi , G. Kahl

A general framework for an emergent universe scenario has been given which makes use of an equation of state. The general features of the model have also been studied and possible primordial composition of the universe have been suggested.

General Relativity and Quantum Cosmology · Physics 2009-11-11 S. Mukherjee , B. C. Paul , N. K. Dadhich , S. D. Maharaj , A. Beesham

The spontaneous symmetry breaking in a vibro-fluidized low-density granular gas in three connected compartments is investigated. When the total number of particles in the system becomes large enough, particles distribute themselves…

Statistical Mechanics · Physics 2009-11-13 J. Javier Brey , R. Garcia-Rojo , F. Moreno , M. J. Ruiz-Montero

Twisted, or vortex, particles refer to freely propagating non-plane-wave states with helicoidal wave fronts. In this state, the particle possesses a non-zero orbital angular momentum with respect to its average propagation direction.…

High Energy Physics - Phenomenology · Physics 2020-05-20 Igor P. Ivanov , Nikolai Korchagin , Alexandr Pimikov , Pengming Zhang

A brief overview is given of some recent advances in charged-composite particle scattering. On the theoretical side, I address the three-charged particle wave function asymptotics, the nonperturbative investigation of the long-range…

Nuclear Theory · Physics 2007-05-23 Erwin O. Alt

A new method, dual-space cluster expansion, is proposed to study classical phases transitions in the continuum. It relies on replacing the particle positions as integration variables by the momenta of the relative displacements of particle…

Mathematical Physics · Physics 2025-11-18 Andras Suto

Electronic spins can form long-range entangled phases of condensed matter named quantum spin liquids. Their existence is conceptualized in models of two- or three-dimensional frustrated magnets that evade symmetry-breaking order down to…

A fundamental open problem in condensed matter physics is how the dichotomy between conventional and topological band insulators is modified in the presence of strong electron interactions. We show that there are 6 new electronic…

Strongly Correlated Electrons · Physics 2014-02-10 Chong Wang , Andrew C. Potter , T. Senthil