Reclaiming the Lost Conformality in the Quantum Potts Model
ORAL
Abstract
Conformal symmetry, emerging at critical points, can be lost when renormalization group fixed points collide. Recently, it was proposed that after collisions, real fixed points transition into the complex plane, becoming complex fixed points described by complex conformal field theories (CFTs). Although this idea is compelling, directly demonstrating such complex conformal fixed points in microscopic models remains highly demanding. Furthermore, these concrete models are instrumental in unraveling the mysteries of complex CFTs and illuminating a variety of intriguing physical problems, including weakly first-order transitions in statistical mechanics and the conformal window of gauge theories. In this work, we have successfully addressed this complex challenge for the (1+1)-dimensional quantum 5-state Potts model, whose phase transition has long been known to be weakly first-order. By adding an additional non-Hermitian interaction, we successfully identify two conjugate critical points located in the complex parameter space, where the lost conformality is restored in a complex manner. Specifically, we unambiguously demonstrate the radial quantization of the complex CFTs and compute the operator spectrum, as well as new operator product expansion coefficients that were previously unknown.
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Publication: Phys. Rev. Lett. 133, 076504
Presenters
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Yin Tang
Westlake University & Zhejiang University
Authors
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Yin Tang
Westlake University & Zhejiang University
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Han Ma
Perimeter Inst for Theo Phys
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Qicheng Tang
Georgia Institute of Technology, Westlake University
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Yin-Chen He
Perimeter Inst for Theo Phys
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Wei Zhu
Westlake University