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首页> 外文期刊>Journal of High Energy Physics >Anomaly-free supersymmetric fractextSO( 2N + 2 )textU( N + 1 ) frac{{{text{SO}}left( {2N + 2} right)}}{{{text{U}}left( {N + 1} right)}} σ-model based on the SO(2N + 1) Lie algebra of the fermion operators
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Anomaly-free supersymmetric fractextSO( 2N + 2 )textU( N + 1 ) frac{{{text{SO}}left( {2N + 2} right)}}{{{text{U}}left( {N + 1} right)}} σ-model based on the SO(2N + 1) Lie algebra of the fermion operators

机译:无异常超对称fractextSO(2N + 2)textU(N +1)frac {{{text {SO}} left({2N + 2} right)}} {{{text {U}} left({N + 1 }对)}}基于费米子算子的SO(2N +1)Lie代数的σ模型

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The extended supersymmetric (SUSY) σ-model has been proposed on the bases of SO(2N + 1) Lie algebra spanned by fermion annihilation-creation operators and pair operators. The canonical transformation, extension of an SO(2N) Bogoliubov transformation to an SO(2N + 1) group, is introduced. Embedding the SO(2N + 1) group into an SO(2N + 2) group and using SO(2N + 2)/U(N + 1) coset variables, we have investigated the SUSY σ-model on the Kähler manifold, the coset space SO(2N + 2)/U(N + 1). We have constructed the Killing potential, extension of the potential in the SO(2N)/U(N) coset space to that in the SO(2N + 2)/U(N + 1) coset space. That Killing potential is equivalent to the generalized density matrix whose diagonal-block part is related to a reduced scalar potential with a Fayet-Ilipoulos term. We rescale the Goldstone fields by a parameter f (inverse of mass m σ ). The f-deformed reduced scalar potential is optimized with respect to vacuum expectation value of the σ-model fields and a solution for one of the SO(2N + 1) group parameters has been obtained. The solution, however, is only a small part of all solutions obtained from anomaly-free SUSY coset models. To construct the coset models consistently, we must embed a coset coordinate in an anomaly-free spinor representation (rep) of SO(2N + 2) group and give corresponding Kähler and Killing potentials for an anomaly-free SO(2N + 2)/U(N + 1) model based on each positive chiral spinor rep. Using such mathematical manipulation we construct successfully the anomaly-free SO(2N + 2)/U(N + 1) SUSY σ-model and investigate new aspects of such a SUSY σ-model which have never been seen in the usual SUSY σ-model on the Kähler coset space SO(2N)/U(N). Then we reach a f-deformed reduced scalar potential in the anomaly-free SO(2N + 2)/U(N + 1) SUSY σ-model. It is minimized with respect to the vacuum expectation value of anomaly-free SUSY σ-model fields. Thus we find an interesting f-deformed solution very different from the previous solution for an anomaly-free SO(2 ⋅ 5 + 2)/(SU(5 + 1) × U(1)) SUSY σ-model.
机译:基于由费米子an灭-创造算子和对算子构成的SO(2N + 1)Lie代数,提出了扩展的超对称(SUSY)σ模型。介绍了规范转换,即将SO(2N)Bogoliubov转换扩展为SO(2N +1)组。将SO(2N + 1)组嵌入到SO(2N + 2)组中,并使用SO(2N + 2)/ U(N + 1)陪集变量,我们研究了Kähler流形上的SUSYσ模型,陪集空间SO(2N + 2)/ U(N +1)。我们构造了Killing势,将SO(2N)/ U(N)陪伴空间中的势扩展到SO(2N + 2)/ U(N + 1)陪伴空间中的势。该杀死势等于广义密度矩阵,该矩阵的对角线部分与使用Fayet-Ilipoulos项降低的标量势有关。我们通过参数f(质量m σ的倒数)重新缩放Goldstone字段。关于σ模型场的真空期望值,对f形变形的减少的标量电势进行了优化,并获得了SO(2N +1)组参数之一的解。但是,该解决方案只是从无异常SUSY陪伴模型获得的所有解决方案的一小部分。为了一致地构建陪集模型,我们必须将陪集坐标嵌入SO(2N + 2)组的无异常Spinor表示(rep)中,并为无异常SO(2N + 2)/给出相应的Kähler和Killing势U(N + 1)模型基于每个阳性手性脊柱重复。使用这种数学操作,我们成功地构建了无异常的SO(2N + 2)/ U(N +1)SUSYσ模型,并研究了这种SUSYσ模型的新方面,这在常规的SUSYσ-中从未见过。 Kähler陪集空间SO(2N)/ U(N)上的模型。然后我们在无异常的SO(2N + 2)/ U(N +1)SUSYσ模型中达到f形变的标量势减小。相对于无异常SUSYσ模型场的真空期望值而言,该值最小。因此,对于无异常的SO(2⋅5 + 2)/(SU(5 +1)×U(1))SUSYσ模型,我们发现了一个有趣的f变形解决方案,该解决方案与以前的解决方案完全不同。

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