Covariant operator formalism for higher derivative systems: vector spin-0 dual model as a prelude to generalized QED\(_4\)

IF 2.9 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY The European Physical Journal Plus Pub Date : 2025-01-24 DOI:10.1140/epjp/s13360-025-06009-5
G. B. de Gracia, A. A. Nogueira
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Abstract

In this work, we extend the Kugo–Ojima–Nakanishi covariant operator formalism to quantize two higher derivative systems, considering their extended phase space structures, more specifically, the one describing spin-0 particles by a vector field and the generalized electrodynamics. We investigate the commutator structure of these theories and present the definition of their physical Hilbert subspaces. The first model presents a reducible gauge symmetry, implying the necessity of two sets of auxiliary fields. The massless limit is also carefully analyzed. After this prelude, the generalized QED\(_4\) can be investigated with such machinery. Regarding the interacting regime, the positive norm subspace is no longer time invariant, since the interaction can create negative norm states from an initially ghost-free one. Then, we furnish an alternative description of the situation by analyzing a set of spectral representations highlighting the lack of positivity associated with the well-known ultraviolet improvement. Finally, based on these efforts and also on recent discussions about Lee–Wick-like models, we prove that it is possible to establish a specific higher derivative interacting model compatible with establishing a time-invariant positive norm subspace.

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高导数系统的协变算子形式:矢量自旋0对偶模型作为广义QED的前奏\(_4\)
在这项工作中,我们扩展了Kugo-Ojima-Nakanishi协变算子形式来量化两个高导数系统,考虑到它们的扩展相空间结构,更具体地说,是一个用向量场和广义电动力学描述自旋为0的粒子。我们研究了这些理论的交换子结构,并给出了它们的物理希尔伯特子空间的定义。第一个模型给出了一个可约规范对称,暗示了两组辅助场的必要性。对无质量极限也进行了仔细的分析。在这个前奏之后,广义QED \(_4\)可以用这样的机器来研究。对于交互状态,正范数子空间不再是时不变的,因为交互可以从最初的无鬼状态产生负范数状态。然后,我们通过分析一组光谱表示来提供对这种情况的另一种描述,这些表示突出了与众所周知的紫外线改进相关的缺乏正性。最后,基于这些努力以及最近关于lee - wick -类模型的讨论,我们证明了可以建立与建立定常正范数子空间相容的特定高导数相互作用模型。
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来源期刊
The European Physical Journal Plus
The European Physical Journal Plus PHYSICS, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
8.80%
发文量
1150
审稿时长
4-8 weeks
期刊介绍: The aims of this peer-reviewed online journal are to distribute and archive all relevant material required to document, assess, validate and reconstruct in detail the body of knowledge in the physical and related sciences. The scope of EPJ Plus encompasses a broad landscape of fields and disciplines in the physical and related sciences - such as covered by the topical EPJ journals and with the explicit addition of geophysics, astrophysics, general relativity and cosmology, mathematical and quantum physics, classical and fluid mechanics, accelerator and medical physics, as well as physics techniques applied to any other topics, including energy, environment and cultural heritage.
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