<p>This study examines the role of electric dipolar interactions in controlling quantum entanglement and coherence in doped graphene systems. It demonstrates that quantum coherence, which is more resilient than concurrence, remains stable at higher temperatures, making it a crucial resource for quantum technologies. The dipolar interaction plays a key role in maintaining both coherence and concurrence, particularly by enhancing coherence at elevated temperatures. These findings highlight the importance of engineering interactions that preserve coherence, even in fluctuating environments. Overall, quantum coherence is identified as essential for the development of robust doped graphene-based quantum technologies, with promising applications in quantum information processing.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Doped graphene quantum systems: exploring entanglement and coherence through electric dipolar interactions

  • Ayyoub El Mouatasim,
  • Abdelghani El Houri,
  • Brahim Adnane,
  • Younes Moqine,
  • Aziz Khribach,
  • Rachid Houça

摘要

This study examines the role of electric dipolar interactions in controlling quantum entanglement and coherence in doped graphene systems. It demonstrates that quantum coherence, which is more resilient than concurrence, remains stable at higher temperatures, making it a crucial resource for quantum technologies. The dipolar interaction plays a key role in maintaining both coherence and concurrence, particularly by enhancing coherence at elevated temperatures. These findings highlight the importance of engineering interactions that preserve coherence, even in fluctuating environments. Overall, quantum coherence is identified as essential for the development of robust doped graphene-based quantum technologies, with promising applications in quantum information processing.