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The reporter learned from Ningbo Oriental University of Technology on the 28th that Yu Xuejia's team, together with relevant research teams from Hunan University and Zhejiang University, achieved important theoretical breakthroughs in the field of quantum phase transitions and critical phenomena. For the first time, they revealed an abnormal dynamic behavior dominated by marginal states in critical point topology, challenging the Kibble—Zurek mechanism in traditional quantum phase transition dynamics, and opening up a new way to detect critical point topological properties on modern quantum simulation platforms. The relevant results were published in the international physics journal “Physics Review Express”.
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The reporter learned from Ningbo Oriental University of Technology on the 28th that Yu Xuejia's team, together with relevant research teams from Hunan University and Zhejiang University, achieved important theoretical breakthroughs in the field of quantum phase transitions and critical phenomena. For the first time, they revealed an abnormal dynamic behavior dominated by marginal states in critical point topology, challenging the Kibble—Zurek mechanism in traditional quantum phase transition dynamics, and opening up a new way to detect critical point topological properties on modern quantum simulation platforms. The relevant results were published in the international physics journal “Physics Review Express”.
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