Measures of quantum information for a graphene Dirac electron under the influence of magnetic fields
摘要
The paper explores the quantum information measures of a graphene Dirac electron under various magnetic field configurations. Using the Shannon entropy framework, we analyze the informational characteristics and behavior of the electron’s quantum states. The study provides a detailed examination of how different magnetic field strengths and orientations affect the distribution and entropy of the electron’s wave function. The results offer significant insights into the quantum informational properties, highlighting the complex interplay between magnetic fields and the quantum coherence of Dirac electrons in graphene. In future work, we will focus on the thermodynamic properties of the system and conduct a comprehensive analysis of the findings.