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首页> 外文期刊>Physical review, D >Calculations of the dominant long-range, spin-independent contributions to the interaction energy between two nonrelativistic Dirac fermions from double-boson exchange of spin-0 and spin-1 bosons with spin-dependent couplings
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Calculations of the dominant long-range, spin-independent contributions to the interaction energy between two nonrelativistic Dirac fermions from double-boson exchange of spin-0 and spin-1 bosons with spin-dependent couplings

机译:从双培制的旋转旋转旋转旋转旋转旋转旋转旋转旋转旋转耦合的两个非旋转性Dimions之间的旋转远程对两个非旋转性Dirac池之间的相互作用能量的计算。

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Various theories beyond the Standard Model predict new particles with masses in the sub-eV range with very weak couplings to ordinary matter which can possess spin-dependent couplings to electrons and nucleons. Present laboratory constraints on exotic spin-dependent interactions with pseudoscalar and axial couplings for exchange boson masses between meVand eVare very poor compared to constraints on spinindependent interactions in the same mass range arising from spin-0 and spin-1 boson exchange. It is therefore interesting to analyze in a general way how one can use the strong experimental bounds on spinindependent interactions to also constrain spin-dependent interactions by considering higher-order exchange processes. The exchange of a pair of bosons between two fermions with spin-dependent couplings will possess contributions which flip spins twice and thereby generate a polarizationindependent interaction energy which can add coherently between two unpolarized objects. In this paper we derive the dominant long-range contributions to the interaction energy between two nonrelativistic spin-1=2 Dirac fermions from double exchange of spin-0 and spin-1 bosons proportional to couplings of the form g_P~4, g_S~2g_P~2, and g_V~2g_A~2. Our results for g_P~4 are in agreement with previous calculations that have appeared in the literature. We demonstrate the usefulness of this analysis to constrain spin-dependent couplings by presenting the results of a reanalysis of data from a short-range gravity experiment to derive an improved constraint on (g_P~N)~2, the pseudoscalar coupling for nucleons, in the range between 40 and 200 μm of about a factor of 5 compared to previous limits. We hope that the expressions derived in this work will be employed by other researchers in the future to evaluate whether or not they can constrain exotic spin-dependent interactions from spin-independent measurements. The spin-independent contribution from 2-boson exchange with axial vector coupl
机译:超越标准模型的各种理论预测与亚电子伏特范围的质量非常弱耦合到可以拥有自旋相关耦合到电子和核子普通物质的新粒子。对于meVand eVare之间交换色子群众与赝和轴向接头异国自旋相关的相互作用本实验室的约束非常差相比于在相同的质量范围从自旋-0和自旋为1的玻色子交换而产生spinindependent相互作用的制约。因此,有趣的一般方式来分析一个人如何能够考虑高阶交换过程中使用的spinindependent相互作用强烈的实验范围也约束自旋相关的相互作用。一对的两个费米子与自旋相关的联接器之间的玻色子的交换将具有其旋转翻转两次贡献,并因此产生polarizationindependent相互作用能可在两个非偏振对象之间相干地相加。在本文中,我们导出到交互能量2非相对论自旋-1 = 2分狄拉克费米子之间从自旋-0和自旋为1的玻色子比例的双交换的主导远距离贡献的形式G_P〜4,G_S〜2g_P的联轴器〜2,g_V〜2g_A〜2。我们的G_P〜4的结果与已在文献中出现以前的计算协议。我们通过从短距离重力实验提供数据的再分析的结果表明,该分析以约束自旋相关耦合的有用以导出上(G_P〜N)的改进的约束〜2,用于核子的赝耦合,在40至200微米的约相比前极限的5倍之间的范围内。我们希望,在这项工作中得出的表达式将被其他研究人员在将来被用来评估他们是否能够限制从分拆独立测量异国自旋相关的相互作用。从与轴矢量coupl 2玻色子交换自旋独立贡献

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