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Constrained BRST-BFV Lagrangian formulations for higher spin fields in Minkowski spaces

机译:在Minkowski空间中约束BRST-BFV拉格朗日制剂在Minkowski空间中的高旋转场

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A bstract BRST-BFV method to construct constrained Lagrangian formulations for (ir)reducible half-integer higher-spin Poincare group representations in Minkowski space is suggested. The procedure is derived by two ways: first, from the unconstrained BRST-BFV method for mixed-symmetry higher-spin fermionic fields subject to an arbitrary Young tableaux with k rows (suggested in Nucl. Phys. B 869 (2013) 523, arXiv:1211.1273 ) by extracting the second-class constraints subsystem, ? ~( α )?=?( ? ~( a ),? ? ~( a )_(+) ), from a total super-algebra of constraints, second, in self-consistent way by means of finding BRST-extended initial off-shell algebraic constraints, ? ~( a ). In both cases, the latter constraints supercommute on the constraint surface with constrained BRST operator Q ~( C )and spin operators σ ~( C )_( i ) . The closedness of the superalgebra { Q ~( C ),? ? ~( a ),? σ ~( C )_( i ) } guarantees that the final gauge-invariant Lagrangian formulation is compatible with the off-shell algebraic constraints ? ~( a )imposed on the field and gauge parameter vectors of the Hilbert space not depending from the ghosts and conversion auxiliary oscillators related to ? ~( a ), in comparison with the vectors for unconstrained BRST-BFV Lagrangian formulation. The suggested constrained BRST-BFV approach is valid for both massive HS fields and integer HS fields in the second-order formulation. It is shown that the respective constrained and unconstrained Lagrangian formulations for (half)-integer HS fields with a given spin are equivalent. The constrained Lagrangians in ghost-independent and component (for initial spin-tensor field) are obtained and shown to coincide with the Fang-Fronsdal formulation for totally-symmetric HS field with respective off-shell gamma-traceless constraints. The triplet and unconstrained quartet Lagrangian formulations for the latter field are derived. The constrained BRST-BFV methods without off-shell constraints describe reducible half-integer HS Poincare group representations with multiple spins as a generalized triplet and provide a starting point for constructing unconstrained Lagrangian formulations by using the generalized quartet mechanism. A gauge-invariant Lagrangian constrained description for a massive spin-tensor field of spin n + 1 / 2 is obtained using a set of auxiliary Stueckelberg spin-tensors. A concept of BRST-invariant second-class constraints for dynamical systems with mixed-class constraints is suggested, leading to equivalent (w.r.t. the BRST-BFV prescription) results of quantization both at the operator level and in terms of the partition function.
机译:建议建立一种BSTRACT BRST-BFV方法,用于构建(IR)的约拉格朗日配方(IR)可降低的半整数在Minkowski空间中的半整数高旋Poincare群体表示。该过程通过两种方式导出:首先,从无约束的BRST-BFV方法进行混合对称的高旋转FERMIONIC字段,其具有K行的任意幼小的幼小表(在NUCL中建议。B 869(2013)523,ARXIV :1211.1273)通过提取二等约束子系统,? 〜(α)?=?(?〜(a),??〜(a)_(+)),从限制的总超代数,第二,通过查找BRST-Extension初始来实现自我一致的方式脱壳代数约束,? 〜(a)。在这两种情况下,后者约束在约束表面上的超级加法,具有受约束的BRST运算符Q〜(c)和旋转算子σ〜(c)_(i)。 Superalgebra的闭合度{q〜(c),?还是〜(a),? Σ〜(c)_(i)}保证最终的仪表 - 不变拉格朗日配方与脱壳代数约束兼容? 〜(a)施加在现场和衡量希尔伯特空间的参数向量,不取决于与鬼魂和转换辅助振荡器相关的? 〜(a)与不受约束的BRST-BFV拉格朗日配方的载体相比。建议的受限BRST-BFV方法对于二阶制定中的大量HS字段和整数HS字段是有效的。结果表明,具有给定旋转的(一半) - 聚乙烯HS场的相应约束和无约束的拉格朗日配方是等同的。获得幽灵独立的和组分(用于初始自旋浪纹场)的受约束的拉格朗日,并示出与具有相应异壳伽马无痕约束的全对称HS场的Fang-Fronsdal制剂。推导出后部地板的三联和无约束的四核拉格朗日配方。受限制的BRST-BFV方法没有离壳约束描述了具有多个旋转作为广义三联体的可降低的半整数HS Poincare组表示,并通过使用广义四肉机制提供用于构建无约束拉格朗日配方的起点。使用一组辅助斯托伯尔伯格旋转旋转器获得用于旋转N + 1/2的巨大旋转张力场的大型旋转张力场的规格 - 不变拉长的描述。提出了一种具有混合级约束的动态系统的BRST-不变的二等限制的概念,导致等效(W.R.T.BRST-BFV处方)在运营商级别和分区功能方面的量化结果。

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