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Higgs amplitude mode in a two-dimensional quantum antiferromagnet near the quantum critical point

机译:HIGGS幅度模式在Quantum临界点附近的二维量子反霉画中

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Spontaneous symmetry-breaking quantum phase transitions play an essential role in condensed-matter physics(1-3). The collective excitations in the broken-symmetry phase near the quantum critical point can be characterized by fluctuations of phase and amplitude of the order parameter. The phase oscillations correspond to the massless Nambu-Goldstone modes whereas the massive amplitude mode, analogous to the Higgs boson in particle physics(4,5), is prone to decay into a pair of low-energy Nambu-Goldstone modes in low dimensions(2,6,7). Especially, observation of a Higgs amplitude mode in two dimensions is an outstanding experimental challenge. Here, using inelastic neutron scattering and applying the bondoperator theory, we directly and unambiguously identify the Higgs amplitude mode in a two-dimensional S = 1/2 quantum antiferromagnet C9H18N2CuBr4 near a quantum critical point in two dimensions. Owing to an anisotropic energy gap, it kinematically prevents such decay and the Higgs amplitude mode acquires an infinite lifetime.
机译:自发对称的量子相变在冷凝物理(1-3)中起重要作用。在量子临界点附近的破裂对称相位中的集体激发可以通过顺序参数的相位和幅度的波动来表征。相位振荡对应于大量的棉铃金石模式,而大规模的幅度模式类似于颗粒物理学(4,5)中的HIGGS玻色子,容易腐烂成低尺寸的一对低能量Nambu-Goldstone模式( 2,6,7)。特别是,在两个维度中观察HIGGS幅度模式是一个出色的实验挑战。这里,使用无弹性中子散射和应用键合器理论,我们直接和明确地识别在二维中的量子临界点附近的二维S = 1/2量子反霉菌C9H18N2Cubr4中的HIGGS幅度模式。由于各向异性的能量隙,其温度地防止了这种衰减,并且HIGGS幅度模式获取无限寿命。

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