Research paperTheoreticalComputational Kinetic ModelTemperature limits of quantum dynamicsS. E. ShafraniukarXiv·2024·10.48550/arxiv.2407.09631·arXiv:2407.09631AbstractUsing numerical experiments, this work studies the temperature limits of transitional quantum dynamics in electrically controlled graphene quantum-cluster devices exposed to an electromagnetic ac field. The paper models single- and three-TLS devices with Lindblad master-equation and Floquet-Markov formalisms, analyzes how the ac field modifies noise and coherent transport, and identifies conditions under which quantum coherence can remain prolonged even above room temperature.Read more
Simulated electrically controlled single-TLS device formed on a graphene zigzag stripe under an ac electromagnetic field.1 propertyCStudied Materialquantum dot / two-level system clusterStudied MaterialExpand
Simulated electrically controlled three-TLS device / qubit cluster formed on a graphene zigzag stripe under an ac electromagnetic field.2 propertiesCStudied Materialquantum dot / two-level system clusterStudied MaterialExpand
Research paperTheoreticalComputational Kinetic ModelTemperature limits of quantum dynamicsS. E. ShafraniukarXiv·2024·10.48550/arxiv.2407.09631·arXiv:2407.09631AbstractUsing numerical experiments, this work studies the temperature limits of transitional quantum dynamics in electrically controlled graphene quantum-cluster devices exposed to an electromagnetic ac field. The paper models single- and three-TLS devices with Lindblad master-equation and Floquet-Markov formalisms, analyzes how the ac field modifies noise and coherent transport, and identifies conditions under which quantum coherence can remain prolonged even above room temperature.Read more
Simulated electrically controlled single-TLS device formed on a graphene zigzag stripe under an ac electromagnetic field.1 propertyCStudied Materialquantum dot / two-level system clusterStudied MaterialExpand
Simulated electrically controlled three-TLS device / qubit cluster formed on a graphene zigzag stripe under an ac electromagnetic field.2 propertiesCStudied Materialquantum dot / two-level system clusterStudied MaterialExpand
Research paperTheoreticalComputational Kinetic ModelTemperature limits of quantum dynamicsS. E. ShafraniukarXiv·2024·10.48550/arxiv.2407.09631·arXiv:2407.09631AbstractUsing numerical experiments, this work studies the temperature limits of transitional quantum dynamics in electrically controlled graphene quantum-cluster devices exposed to an electromagnetic ac field. The paper models single- and three-TLS devices with Lindblad master-equation and Floquet-Markov formalisms, analyzes how the ac field modifies noise and coherent transport, and identifies conditions under which quantum coherence can remain prolonged even above room temperature.Read more
Simulated electrically controlled single-TLS device formed on a graphene zigzag stripe under an ac electromagnetic field.1 propertyCStudied Materialquantum dot / two-level system clusterStudied MaterialExpand
Simulated electrically controlled three-TLS device / qubit cluster formed on a graphene zigzag stripe under an ac electromagnetic field.2 propertiesCStudied Materialquantum dot / two-level system clusterStudied MaterialExpand
Research paperTheoreticalComputational Kinetic ModelTemperature limits of quantum dynamicsS. E. ShafraniukarXiv·2024·10.48550/arxiv.2407.09631·arXiv:2407.09631AbstractUsing numerical experiments, this work studies the temperature limits of transitional quantum dynamics in electrically controlled graphene quantum-cluster devices exposed to an electromagnetic ac field. The paper models single- and three-TLS devices with Lindblad master-equation and Floquet-Markov formalisms, analyzes how the ac field modifies noise and coherent transport, and identifies conditions under which quantum coherence can remain prolonged even above room temperature.Read more
Simulated electrically controlled single-TLS device formed on a graphene zigzag stripe under an ac electromagnetic field.1 propertyCStudied Materialquantum dot / two-level system clusterStudied MaterialExpand
Simulated electrically controlled three-TLS device / qubit cluster formed on a graphene zigzag stripe under an ac electromagnetic field.2 propertiesCStudied Materialquantum dot / two-level system clusterStudied MaterialExpand