TY - JOUR
T1 - Many-body tunneling and nonequilibrium dynamics in double quantum dots with capacitive coupling
AU - Hou, Wenjie
AU - Wang, Yuandong
AU - Zhao, Weisheng
AU - Zhu, Zhengang
AU - Wei, Jianhua
AU - Luo, Honggang
AU - Yan, Yijing
N1 - Publisher Copyright:
© 2020 IOP Publishing Ltd.
PY - 2020
Y1 - 2020
N2 - Double quantum dots (DQDs) systems may be the minimal setups for realization of QD-based qubits and quantum computation. Pauli spin blockade (PSB) and a kind of novel many-body tunneling (MBT) are identified to play important roles in these systems, and dominate the quantum tunneling at moderate and weak interdot coupling t, respectively. On the other hand, inter-dot Coulomb interaction U′ and related inter-dot Coulomb blockade (IDCB) is inevitable in DQDs. However, what would happen on the effect of U′ in DQDs has not been touched, in particular for PSB and MBT. Here, we study the tunneling processes and transport properties with various U′ in series-coupled DQDs, and find MBT process is rather robust against U′ within U′/U < 0.1, where U is the intra-dot Coulomb interaction. Meanwhile, the linearity relationship between the carrier doublon number and MBT current remains valid. These findings enrich the understanding of the many-body tunneling in the DQDs and may shed light on the manipulation of the QD-based qubits.
AB - Double quantum dots (DQDs) systems may be the minimal setups for realization of QD-based qubits and quantum computation. Pauli spin blockade (PSB) and a kind of novel many-body tunneling (MBT) are identified to play important roles in these systems, and dominate the quantum tunneling at moderate and weak interdot coupling t, respectively. On the other hand, inter-dot Coulomb interaction U′ and related inter-dot Coulomb blockade (IDCB) is inevitable in DQDs. However, what would happen on the effect of U′ in DQDs has not been touched, in particular for PSB and MBT. Here, we study the tunneling processes and transport properties with various U′ in series-coupled DQDs, and find MBT process is rather robust against U′ within U′/U < 0.1, where U is the intra-dot Coulomb interaction. Meanwhile, the linearity relationship between the carrier doublon number and MBT current remains valid. These findings enrich the understanding of the many-body tunneling in the DQDs and may shed light on the manipulation of the QD-based qubits.
KW - Pauli spin blockade
KW - double quantum dots
KW - inter-dot Coulomb blockade
KW - many-body tunneling
UR - https://www.scopus.com/pages/publications/85098235061
U2 - 10.1088/1361-648X/abc5d5
DO - 10.1088/1361-648X/abc5d5
M3 - 文章
C2 - 33120379
AN - SCOPUS:85098235061
SN - 0953-8984
VL - 33
JO - Journal of Physics Condensed Matter
JF - Journal of Physics Condensed Matter
IS - 7
M1 - 075301
ER -