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48 results for spinor representation

Spinor representation in isotropic space via Laguerre geometry.

problem Representing conformal and constant mean curvature surfaces in isotropic space.
method Developing Laguerre geometry of isotropic space, defining spin transformations, and constructing Weierstrass and Kenmotsu representations.
result Explicit constructions of zero mean curvature and constant mean curvature surfaces.

The paper extends Weierstrass representation to non-minimal conformal immersions.

problem Understanding conformal immersions of Riemann surfaces into 3D space.
method Generalizing Weierstrass representation to arbitrary conformal immersions and studying spin structures and spinors.
result Immersions give rise to spin structures and spinors, allowing for new ways to study the immersions.

We prove that an isometric immersion of a simply connected Lorentzian surface in R2,2\mathbb{R}^{2,2} is equivalent to a normalised spinor field solution of a Dirac equation on the surface. Using the quaternions and the Lorentz numbers, we also obtain an explicit representation formula of the immersion in terms of the sp…

2014-10-27abs ↗pdf ↗

We prove that an isometric immersion of a timelike surface in four-dimensional Minkowski space is equivalent to a normalized spinor field which is a solution of a Dirac equation on the surface. Using the quaternions and the complex numbers, we obtain a spinor representation formula that relates the spinor field and the…

2017-04-28abs ↗pdf ↗

The article studies spinor and tensor fields on curved spaces, deriving formulas and spectra.

problem Understanding spinor and tensor fields on curved spaces.
method Weitzenböck-type formulas, explicit factorization of Laplace operator, representation theory.
result Explicit factorization of the Laplace operator and spectra calculation on constant curvature spaces.

The spinor representation is developed and used to investigate minimal surfaces in ${\bfR}^3$ with embedded planar ends. The moduli spaces of planar-ended minimal spheres and real projective planes are determined, and new families of minimal tori and Klein bottles are given. These surfaces compactify in S3S^3 to yield …

1995-12-04abs ↗pdf ↗

The paper connects hyperbolic spinors to non-null framed curves in Minkowski 3-space.

problem Understanding geometric properties of non-null framed curves.
method Developed new adapted frames for non-null framed curves and investigated their hyperbolic spinor representations.
result Found geometric results and interpretations for non-null framed curves.

In this paper we complete the classification of spin manifolds admitting parallel spinors, in terms of the Riemannian holonomy groups. More precisely, we show that on a given n-dimensional Riemannian manifold, spin structures with parallel spinors are in one to one correspondence with lifts to Spin_n of the Riemannian …

1999-03-11abs ↗pdf ↗

Results on symplectic spinors and their higher spin versions, concerning representation theory and cohomology properties are presented. Exterior forms with values in the symplectic spinors are decomposed into irreducible modules including finding the hidden symmetry (Schur--Weyl--Howe type duality) given by a represent…

2017-08-07abs ↗pdf ↗

The paper characterizes new invariant spinr^r spinors on projective spaces.

problem Characterizing new invariant spinr^r spinors on projective spaces.
method Adapting spin representation via exterior forms to the generalised spinr^r context.
result Complete description of the space of invariant spinr^r spinors for CPn\mathbb{CP}^n, HPn\mathbb{HP}^n, and OP2\mathbb{OP}^2.

The aim of the present paper is to clarify the relationship between immersions of surfaces and solutions of the inhomogeneous Dirac equation. The main idea leading to the description of a surface M^2 by a spinor field is the observation that the restriction to M^2 of any parallel spinor phi on R^3 is (with respect to t…

1997-12-30abs ↗pdf ↗

We generalize the spinorial characterization of isometric immersions of surfaces in R^3 given by T. Friedrich (On the spinor representation of surfaces in Euclidean 3-space, J. Geom. Phys. 28 (1998)) to surfaces in S^3 and H^3. The main argument is the interpretation of the energy-momentum tensor associated with a spec…

2002-04-08abs ↗pdf ↗

The first time that the connection between isometric immersion of surfaces and solutions of the Dirac equation appeared in the literature was in the seminal paper of Thomas Friedrich in 1998. In consequence of that, several authors contributed to this topic hereafter, by obtaining the spinorial representation of Spin m…

2019-12-01abs ↗pdf ↗

This is a survey of results on surfaces in noncommutative three-dimensional Lie groups obtained by using the Weierstrass (spinor) representation of surfaces. It is based on the talk given at the conference "Geometry related to the theory of integrable systems" (RIMS, Kyoto, September 2007).

2007-12-26abs ↗pdf ↗

Spinor formalism is the formalism induced by solutions of the Clifford equation (the connecting operators). For the space-time manifold (n = 4), these operators, connecting the tangent and spinor bundle, are operators that are represented by the Dirac matrices in the special basis. Reduced connecting operators are repr…

2011-10-21abs ↗pdf ↗

In this paper, we describe the group SpinT (n) and give some properties of this group. We construct SpinT spinor bundle S by means of the spinor representation of the group SpinT (n) and define covariant derivative operator and Dirac operator on S. Finally, Schrodinger-Lichnerowicz-type formula is derived by using thes…

2015-08-19abs ↗pdf ↗

In the literature, two approaches to the Weierstrass representation formula using spinors are known, one explicit, going back to Kusner & Schmitt, and generalized by Konopelchenko and Taimanov, and one abstract due to Friedrich, Bayard, Lawn and Roth. In this article, we show that both points of view are indeed equival…

2013-09-02abs ↗pdf ↗

We present a binary code for spinors and Clifford multiplication using non-negative integers and their binary expressions, which can be easily implemented in computer programs for explicit calculations. As applications, we present explicit descriptions of the triality automorphism of Spin(8)Spin(8), explicit representations…

2019-05-25abs ↗pdf ↗

Let G be a compact, semi-simple Lie group and H a maximal rank reductive subgroup. The irreducible representations of G can be constructed as spaces of harmonic spinors with respect to a Dirac operator on the homogeneous space G/H twisted by bundles associated to the irreducible, possibly projective, representations of…

2000-05-05abs ↗pdf ↗

In this paper we examine the structure of Riemannian manifolds with a special kind of Codazzi tensors. We use them to construct globally hyperbolic Lorentzian manifolds with complete Cauchy hypersurfaces for any weakly irreducible holonomy representation with parallel spinors, i.e. with a holonomy group which is a semi…

2007-04-27abs ↗pdf ↗

We describe the flat surfaces with flat normal bundle and regular Gauss map immersed in R^4 using spinors and Lorentz numbers. We obtain a new proof of the local structure of these surfaces. We also study the flat tori in the sphere S^3 and obtain a new representation formula. We then deduce new proofs of their global …

2013-10-12abs ↗pdf ↗

We use the manifestly conformally invariant description of a Lorentzian conformal structure in terms of a parabolic Cartan geometry in order to introduce a superalgebra structure on the space of twistor spinors and normal conformal vector fields formulated in purely algebraic terms on parallel sections in tractor bundl…

2014-08-10abs ↗pdf ↗

The decomposition of the spinor bundle of the spin Grassmann manifolds Gm,n=SO(m+n)/SO(m)×SO(n)G_{m,n}=SO(m+n)/SO(m)\times SO(n) into irreducible representations of so(m)so(n)\mathfrak{so}(m)\oplus\mathfrak{so}(n) is presented. A universal construction is developed and the general statement is proven for G2k+1,3G_{2k+1,3}, G2k,4G_{2k,4}, and G2k+1,5G_{2k+1,5} f…

2007-10-17abs ↗pdf ↗

A 12D spinor encodes fermions in a 4D Kaluza-Klein model.

problem Encoding fermions in a 4D spacetime from a higher-dimensional perspective.
method Using a spacetime P=M4imesKP = M_4 imes K with K=SU(3)K = \mathrm{SU}(3), encoding fermions in 64 spinor components.
result The 64 spinor components couple to Standard Model gauge fields in chiral representations.

The article consists of the Russian and English variants of Ph.D. Thesis in which the answers is given on the following questions: 1. how to construct the spinor formalism for n=6; 2. how to construct the spinor formalism for n=8; 3. how to prolong the Riemannian connection from the tangent bundle into the spinor one w…

2012-04-01abs ↗pdf ↗

Establishes a framework for stringor bundles, proving their canonical isomorphism to Stolz-Teichner's.

problem Defining and rigorously studying higher differential geometric objects like stringor bundles.
method Developed a framework of 2-Hilbert bundles, including an associated bundle construction.
result Proves the Stolz-Teichner stringor bundle is canonically isomorphic to the 2-Hilbert bundle.

We study the space of Killing fields on the four dimensional AdS spacetime AdS3,1AdS^{3,1}. Two subsets S\mathcal{S} and O\mathcal{O} are identified: S\mathcal{S} (the spinor Killing fields) is constructed from imaginary Killing spinors, and O\mathcal{O} (the observer Killing fields) consists of all hypersurface orthog…

2015-09-30abs ↗pdf ↗

The spinor representation is developed for conformal immersions of Riemann surfaces into space. We adapt the approach of Dennis Sullivan, which treats a spin structure on a Riemann surface M as a complex line bundle S whose square is the canonical line bundle K=T(M). Given a conformal immersion of M into \bbR^3, the un…

1996-10-08abs ↗pdf ↗