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The experiment E155 at SLAC measured the spin structure functions g_1 and g_2 of the proton and deuteron. The experiment used deep inelastic scattering of 48.3 GeV longitudinally polarized electrons incident on polarized solid ^{15}NH_3 and…

High Energy Physics - Experiment · Physics 2007-05-23 Gregory S. Mitchell

The local $SL(2N,C)$ symmetry is shown to provide, when appropriately constrained, a viable framework for a consistent unification of the known elementary forces, including gravity. Such a covariant constraint implies that an actual gauge…

High Energy Physics - Theory · Physics 2024-11-07 J. L. Chkareuli

Experiments in coherent nuclear and electron magnetic resonance, and optical spectroscopy correspond to control of quantum mechanical ensembles, guiding them from initial to final target states by unitary transformations. The control inputs…

Quantum Physics · Physics 2009-11-13 Haidong Yuan , Steffen J. Glaser , N. Khaneja

In previous works, the universal mapping class group was taken to be the group PPSL(2,Z) of all piecewise PSL(2,Z) homeomorphisms of the unit circle S^1 with finitely many breakpoints among the rational points, and in fact, the Thompson…

Geometric Topology · Mathematics 2023-10-10 Robert Penner

This paper considers two sets of formulas related to a Spin Coherence Time (SCT) case with only vertical oscillations in a purely electric ring, the first derived by the author for the field index m > 0 and the second by Ivan Koop for the…

Accelerator Physics · Physics 2015-04-29 Yuri Orlov

The su(1$|$1) symmetric version of the Haldane-Shastry spin chain is diagonalized by means of a linear transformation. The same transformation applied to the original su(2) model yields simple expressions for the Hamiltonian and the…

Condensed Matter · Physics 2016-08-15 Frank Göhmann , Miki Wadati

In this paper we produce further specification of the geometric and algebraic properties of the earlier introduced superdimensional dual-covariant field theory (SFT) in a N-dimensional manifold [1] as an approach to a unified field theory…

General Physics · Physics 2015-12-08 Yaroslav Derbenev

We propose a basis for rational gl(N) spin chains in an arbitrary rectangular representation $(S^A)$ that factorises the Bethe vectors into products of Slater determinants in Baxter Q-functions. This basis is constructed by repeated action…

Mathematical Physics · Physics 2020-03-11 Paul Ryan , Dmytro Volin

We prove Langlands functoriality for the generic spectrum of general spin groups (both odd and even). Contrary to other recent instances of functoriality, our resulting automorphic representations on the general linear group will not be…

Number Theory · Mathematics 2007-05-23 Mahdi Asgari , Freydoon Shahidi

We employ the $1/2$-spin tautological relations to provide a particular combinatorial identity. We show that this identity is a statement equivalent to Faber's formula for proportionalities of kappa-classes on $\mathcal{M}_g$, $g\geq 2$. We…

Combinatorics · Mathematics 2019-10-21 Elba Garcia-Failde , Reinier Kramer , Danilo Lewański , Sergey Shadrin

The decomposition of the spinor bundle of the spin Grassmann manifolds $G_{m,n}=SO(m+n)/SO(m)\times SO(n)$ into irreducible representations of $\mathfrak{so}(m)\oplus\mathfrak{so}(n)$ is presented. A universal construction is developed and…

Differential Geometry · Mathematics 2011-05-23 Frank Klinker

A unitary transformation is applied to the Hubbard model, which maps the Hubbard interaction to a single particle term. The resulting Hamiltonian consists of unconstrained fermions, which is then mapped to a Hamiltonian of spinless fermions…

Strongly Correlated Electrons · Physics 2024-03-18 Kirill Alpin

Spinons are among the generic excitations in one-dimensional spin systems, they can be massless or massive. The quantitative description of massive spinons poses a considerable challenge in spite of various variational approaches. We show…

Strongly Correlated Electrons · Physics 2017-05-30 Mohsen Hafez-Torbati , Götz S. Uhrig

We show that the spin (1/2-) particle from the (1/2,1)+(1,1/2) Lorentz irreducible sector of the four-vector spinor can not be described within a linear formalism but behaves as a genuinely quadratic fermion satisfying the generalized…

High Energy Physics - Phenomenology · Physics 2015-07-15 E. G. Delgado Acosta , V. M. Banda Guzmán , M. Kirchbach

We examine a simple heuristic test of integrability for quantum chains. This test is applied to a variety of systems, including a generic isotropic spin-1 model with nearest-neighbor interactions and a multiparameter family of spin-1/2…

High Energy Physics - Theory · Physics 2009-10-28 M. P. Grabowski , P. Mathieu

We perform a systematic exact algebraic search for integrable spin-S chains which are isotropic in spin space, i.e. are su(2)-invariant. The families of spin chains found for S < 14 support recent arguments in favour of the complete…

Condensed Matter · Physics 2007-05-23 M. T. Batchelor , C. M. Yung

The analysis of the transfer matrices associated to the most general representations of the 8-vertex reflection algebra on spin-1/2 chains is here implemented by introducing a quantum separation of variables (SOV) method which generalizes…

Mathematical Physics · Physics 2015-06-16 S. Faldella , G. Niccoli

Spin chains can be used to describe a wide range of platforms for quantum computation and quantum information. They enable the understanding, demonstration, and modeling of numerous useful phenomena, such as high fidelity transfer of…

Quantum Physics · Physics 2023-08-14 Abdulsalam H. Alsulami , Irene D'Amico , Marta P. Estarellas , Timothy P. Spiller

We generalize our previous unification of the Schrodinger and guidance equations in a single inhomogeneous Schrodinger equation to a Riemannian manifold with an external vector potential. A special case yields the unified theory for a spin…

Quantum Physics · Physics 2021-11-09 Peter Holland

We argue that spin charge separation holds the key to the understanding of high temperature superconductivity.

Strongly Correlated Electrons · Physics 2015-06-24 Philip W. Anderson