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Little Strings are a type of non-gravitational quantum theories that contain extended degrees of freedom, but behave like ordinary Quantum Field Theories at low energies. A particular class of such theories in six dimensions is engineered…

High Energy Physics - Theory · Physics 2024-07-17 Baptiste Filoche , Stefan Hohenegger , Taro Kimura

We show that the one loop amplitudes of open and closed string theory in a constant background two-form tensor field are characterized by an effective string tension larger than the fundamental string tension, and by the appearance of…

High Energy Physics - Theory · Physics 2009-10-31 Shyamoli Chaudhuri , Eric G. Novak

The statistical mechanics of black holes arbitrarily far from extremality is modeled by a gas of weakly interacting strings. As an effective low energy description of black holes the model provides a number of highly non-trivial consistency…

High Energy Physics - Theory · Physics 2009-10-30 Finn Larsen

We consider open bosonic strings. The non-interacting multi-string theory is described by certain free string field operators which we construct. These are shown to have local commutators with respect to a center of mass coordinate. The…

Mathematical Physics · Physics 2007-05-23 J. Dimock

We consider an exactly solvable worldsheet string theory in the background of a black brane with a gauge field flux. Holographically, such a system can be interpreted as a field theory with finite number of degrees of freedom at finite…

High Energy Physics - Theory · Physics 2013-06-14 Mikhail Goykhman , Andrei Parnachev

We propose a nonperturbative framework for the O(32) type I open and closed string theory. The short distance degrees of freedom are bosonic and fermionic hermitian matrices belonging respectively to the adjoint and fundamental…

High Energy Physics - Theory · Physics 2012-01-25 Shyamoli Chaudhuri

We study confining strings in massive adjoint two-dimensional chromodynamics. Off-shell, as a consequence of zigzag formation, the resulting worldsheet theory provides a non-trivial dynamical realization of infinite quon statistics. Taking…

High Energy Physics - Theory · Physics 2020-11-03 John C. Donahue , Sergei Dubovsky

Connection between the partition function for the 2D sigma model with boundary pertubations and the low energy effective action for massless fields from in the open string theory is discussed. In the non-abelian case with a stack of $N$…

High Energy Physics - Theory · Physics 2009-11-07 Vasily Pestun

The noncommutative string theory is described by embedding open string theory in a constant second rank antisymmetric $B_{\mu\nu}$ field and the noncommutative gauge theory is defined by a deformed $\star$ product. As a check, study of…

High Energy Physics - Theory · Physics 2014-11-18 Shesansu Sekhar Pal

We study classically unstable string type configurations and compute the renormalized vacuum polarization energies that arise from fermion fluctuations in a 2+1 dimensional analog of the standard model. We then search for a minimum of the…

High Energy Physics - Theory · Physics 2008-11-26 N. Graham , M. Quandt , O. Schroeder , H. Weigel

We study the loop expansion for the low energy effective action for matrix string theory. For long string configurations we find the result depends on the ordering of limits. Taking $g_s\to 0$ before $N\to\infty$ we find free strings.…

High Energy Physics - Theory · Physics 2009-10-31 Thomas Wynter

In a certain kinematic limit, where the effects of spacetime curvature (and other background fields) greatly simplify, the light-cone gauge world-sheet action for a type IIB superstring on AdS_5 x S^5 reduces to that of a free field theory.…

High Energy Physics - Theory · Physics 2012-08-27 Curtis G. Callan, , Hok Kong Lee , Tristan McLoughlin , John H. Schwarz , Ian Swanson , Xinkai Wu

In this letter we argue that instanton-dominated Green's functions in N=2 Super Yang-Mills theories can be equivalently computed either using the so-called constrained instanton method or making reference to the topological twisted version…

High Energy Physics - Theory · Physics 2009-10-31 D. Bellisai , F. Fucito , A. Tanzini , G. Travaglini

Following some recent work by Gross, we consider the partition function for QCD on a two dimensional torus and study its stringiness. We present strong evidence that the free energy corresponds to a sum over branched surfaces with small…

High Energy Physics - Theory · Physics 2009-10-22 Joseph A. Minahan

We investigate the type IIA AdS(3) x S(3) x M(4) superstring with M(4)=S(3) x S(1) or M(4)=T(4). String theory in this background is interesting because of AdS3/CFT2 and its newly discovered integrable structures. We derive the kappa…

High Energy Physics - Theory · Physics 2017-08-23 Nitin Rughoonauth , Per Sundin , Linus Wulff

A method to solve various aspects of the strong coupling expansion of the superconformal field theory duals of AdS_5 x X geometries from first principles is proposed. The main idea is that at strong coupling the configurations that dominate…

High Energy Physics - Theory · Physics 2009-05-20 David Berenstein

Fractional strings in the spectrum of states of open strings attached to a multiply wound D-brane is explained. We first describe the fractional string states in the low-energy effective theory where the topology of multiple winding is…

High Energy Physics - Theory · Physics 2009-10-30 Akikazu Hashimoto

We study BPS bound states of little strings in a limit where they realise monopole strings in five dimensional gauge theories. The latter have gauge group $U(M)^N$ and arise from compactification of $(1,0)$ little string theories of type…

High Energy Physics - Theory · Physics 2017-10-18 Ambreen Ahmed , Stefan Hohenegger , Amer Iqbal , Soo-Jong Rey

Few natural basic principles allow to extend Feynman integral over the paths to an integral over the surfaces so, that they coincide at long time scale, that is when the surface degenerates into a single particle world line. In the first…

High Energy Physics - Theory · Physics 2015-06-26 G. K. Savvidy , K. G. Savvidy

We present detailed analytic calculations of finite-volume energy spectra, mean field theory, as well as a systematic low-energy effective field theory for the square lattice quantum dimer model. The analytic considerations explain why a…

Strongly Correlated Electrons · Physics 2016-09-14 D. Banerjee , M. B"ogli , C. P. Hofmann , F. -J. Jiang , P. Widmer , U. -J. Wiese
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