Katsuyuki Sugiyama’s research while affiliated with Kyoto University and other places

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Publications (22)


Superconformal Symmetry in Linear Sigma Model on Supermanifolds
  • Article

October 2006

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20 Reads

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11 Citations

Nuclear Physics B

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Katsuyuki Sugiyama

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Tatsuya Tokunaga

We consider a gauged linear sigma model in two dimensions with Grassmann odd chiral superfields. We investigate the Konishi anomaly of this model and find out the condition for realization of superconformal symmetry on the world-sheet. When this condition is satisfied, the theory is expected to flow into conformal theory in the infrared limit. We construct superconformal currents explicitly and study some properties of this world-sheet theory from the point of view of conformal field theories. (c) 2006 Elsevier B.V. All rights reserved.


Superconformal Symmetry in Linear Sigma Model on Supermanifolds

May 2006

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1 Read

We consider a gauged linear sigma model in two dimensions with Grassmann odd chiral superfields. We investigate the Konishi anomaly of this model and find out the condition for realization of superconformal symmetry on the world-sheet. When this condition is satisfied, the theory is expected to flow into conformal theory in the infrared limit. We construct superconformal currents explicitly and study some properties of this world-sheet theory from the point of view of conformal field theories.


Gauged Linear Sigma Model on Supermanifold
  • Article
  • Full-text available

April 2005

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54 Reads

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14 Citations

We formulate a gauged linear sigma model on a supermanifold. The structure of classical vacua is investigated and one-loop corrections are calculated for an auxiliary D-field. We find out a constraint for the one-loop divergence to vanish, which is consistent with a Ricci flatness condition for the supermanifold. Two types of D-branes are obtained by analysing supersymmetric boundary conditions. We also provide extensions to a non-abelian gauged linear sigma model and a (0,2) supersymmetric model.

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Construction of Supergravity Backgrounds with a Dilaton Field

November 2004

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13 Reads

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4 Citations

Physics Letters B

A new class of non-compact Kahler backgrounds accompanied by a non-constant dilaton field is constructed as a supergravity solution. It is interpreted as a complex line bundle over a base manifold comprising of a combination of arbitrary coset spaces, and also includes the case of Calabi-Yau manifolds. The resulting backgrounds have U(1) isometry. We consider N=2 supersymmetric sigma-models on them, and derive a non-Kahlerian solution by U(1) duality transformation, which preserves N=2 supersymmetry. Comment: 13 pages, minor corrections


N=2 Supersymmetric Sigma Models and D-branes

April 2004

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15 Reads

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3 Citations

Physical Review D

We study D-branes of N=2 supersymmetric sigma models. Supersymmetric nonlinear sigma models with 2-dimensional target space have D0,D1,D2-branes, which are realized as A-,B-type supersymmetric boundary conditions on the worldsheet. When we embed the models in the string theory, the Kahler potential is restricted and leads to a 2-dim black hole metric with a dilaton background. The D-branes in this model are susy cycles and consistent with the analysis of conjugacy classes. The generalized metrics with U(n) isometry is proposed and dynamics on them are realized by linear sigma models. We investigate D-branes of the linear sigma models and compare the results with those in the nonlinear sigma models. Comment: 23 pages, 5 figures


Partition Function and Open/Closed String Duality in Type IIA String Theory on a PP-wave

June 2003

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27 Reads

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13 Citations

Nuclear Physics B

We discuss partition functions of type IIA string theory on the pp-wave background. This theory is shown to be modular invariant. The boundary states are constructed and possible D-brane instantons are classified. Then we calculate cylinder amplitudes in both closed and open string descriptions and check the open/closed string duality. Furthermore we consider general properties of modular invariant partition functions in the case of pp-waves.


Partition Function and Open/Closed String Duality in Type IIA String Theory on a PP-wave

June 2003

We discuss partition functions of N=(4,4) type IIA string theory on the pp-wave background. This theory is shown to be modular invariant. The boundary states are constructed and possible D-brane instantons are classified. Then we calculate cylinder amplitudes in both closed and open string descriptions and check the open/closed string duality. Furthermore we consider general properties of modular invariant partition functions in the case of pp-waves.


Supermembrane on the pp-wave background

November 2002

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16 Reads

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80 Citations

Nuclear Physics B

We study the closed and open supermembranes on the maximally supersymmetric pp-wave background. In the framework of the membrane theory, the superalgebra is calculated by using the Dirac bracket and we obtain its central extension by surface terms. The result supports the existence of the extended objects in the membrane theory in the pp-wave limit. When the central terms are discarded, the associated algebra completely agrees with that of Berenstein–Maldacena–Nastase matrix model. We also discuss the open supermembranes on the pp-wave and elaborate the possible boundary conditions.


Type IIA string and matrix string on pp-wave

November 2002

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26 Reads

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93 Citations

Nuclear Physics B

We study type IIA string theories on the pp-waves with 24 supercharges. The type IIA pp-wave backgrounds are derived from the maximally supersymmetric pp-wave solution in eleven dimensions through the toroidal compactification on the spatial isometry directions. The associated actions of type IIA strings are obtained by using these metrics and other background fields of the type IIA supergravities on the one hand. On the other hand, we derive these theories from D=11 supermembrane on the pp-wave via double-dimensional reduction for the spatial isometry directions. The resulting actions agree with those of type IIA strings obtained in the study of the supergravities. Also, the action of the matrix string is written down. Moreover, the quantization of closed and open strings is discussed. In particular, we study Dp-branes allowed in one of the type IIA theories.



Citations (18)


... Unfortunately, the geometric meaning (if any) of these SW-algebras is obscured in the purely algebraic classifications: a more elaborate procedure is needed to identify the algebra underlying a given string background. An approach that has been extensively used in the literature is to focus on geometries such that the corresponding SW-algebra admits a straightforward description, for example in terms of a free field realisation [6,10,11,13,14,[36][37][38], Gepner models [15,[39][40][41][42][43][44][45][46] or WZW models and coset realisations [17,[47][48][49][50][51][52][53]. Another way -found in the mathematical literature -to provide a geometric interpretation of a Walgebra consists in finding an embedding into the sections of the chiral de Rham complex [54], which is a sheaf of vertex algebras over a manifold. ...

Reference:

\mathcal{SW} $$-algebras and strings with torsion
Cascade of Special Holonomy Manifolds and Heterotic String Theory
  • Citing Preprint
  • August 2001

... The spectrum found in this way [18] agrees with the supergravity calculation and WZW point analysed in [17]. When α = 1/2 the two S 3 s in the geometry have the same radius and one can define a Z 2 orbifold whose action swaps the two three-spheres and inverts the circle [42]. These authors showed that it is possible to extend the orbifold action in a way that preserves N = (3, 3) super-conformal symmetry, whose global symmetry is osp(3|2) ⊂ osp(4|2) ≡ d(2, 1; α = 1 2 ). ...

AdS3/CFT2 correspondence and space-time N = 3 superconformal algebra

Journal of High Energy Physics

... In this paper, we focus on the type II superstring compactified on Calabi-Yau manifold and study its topological sector from the point of view of topological sigma models (A-and B-models) [1] to investigate properties of moduli spaces. Because both the A-and B-models are topological theories, they are characterized by their two-point and three point functions that play important roles as the constituent blocks in these models [2]- [10]. Topological metrics are two-point functions and receive no quantum corrections. ...

Kähler potential of moduli space of Calabi–Yau d-fold embedded in CP
  • Citing Article
  • April 2000

... Other sectors of the M2-brane with good quantum properties have also been identified: the M2-brane on a pp-wave background [11,12] whose regularization is described by the BMN matrix model [13] and its spectral properties proved in [14], as well as a toroidally compactified M2-brane in the presence of a quantized constant three-form that induces worldvolume 2form fluxes [15]. Recently, a new sector associated to the compactification of the M2-brane on a particular 10D spacetime with punctures has also been obtained. ...

Supermembrane on the pp-wave background
  • Citing Article
  • November 2002

Nuclear Physics B

... Supermanifolds have recently been of interest in the community, see e.g. [3][4][5][6][7][8][9][10][11][12]. The purpose of this paper is to use supersymmetric localization to explore properties of gauged linear sigma models with target supermanifolds, checking the equivalence [1,2] of A-twisted nonlinear sigma models (NLSMs) on supermanifolds with A-twisted nonlinear sigma models on ordinary hypersurfaces and complete intersections in (2,2) supersymmetric cases. ...

Superconformal Symmetry in Linear Sigma Model on Supermanifolds
  • Citing Article
  • October 2006

Nuclear Physics B

... * Matrix model on the eleven-dimensional pp-wave background [8] was proposed by Berenstein-Maldacena-Nastase [9] and the spectrum of this matrix model was studied in [10]. In [11,12] supermembrane theory on the pp-waves which is related to the matrix model via the matrix regularization [2], is discussed from several viewpoints. For a relation to the eleven-dimensional supergravity, see [13]. ...

BPS Conditions of Supermembrane on the PP-wave

Physics Letters B

... Unfortunately, the geometric meaning (if any) of these SW-algebras is obscured in the purely algebraic classifications: a more elaborate procedure is needed to identify the algebra underlying a given string background. An approach that has been extensively used in the literature is to focus on geometries such that the corresponding SW-algebra admits a straightforward description, for example in terms of a free field realisation [6,10,11,13,14,[36][37][38], Gepner models [15,[39][40][41][42][43][44][45][46] or WZW models and coset realisations [17,[47][48][49][50][51][52][53]. Another way -found in the mathematical literature -to provide a geometric interpretation of a Walgebra consists in finding an embedding into the sections of the chiral de Rham complex [54], which is a sheaf of vertex algebras over a manifold. ...

Coset construction of noncompact Spin(7) and G2 CFTs
  • Citing Article
  • April 2002

Physics Letters B

... Supermanifolds have recently been of interest in the community, see e.g. [3][4][5][6][7][8][9][10][11][12]. The purpose of this paper is to use supersymmetric localization to explore properties of gauged linear sigma models with target supermanifolds, checking the equivalence [1,2] of A-twisted nonlinear sigma models (NLSMs) on supermanifolds with A-twisted nonlinear sigma models on ordinary hypersurfaces and complete intersections in (2,2) supersymmetric cases. ...

Gauged Linear Sigma Model on Supermanifold