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Weber, B. et al. Spin blockade and exchange in Coulomb-confined silicon double quantum dots.
Moreover, these fringes are amplified and π-phase shifted, compared with those in the spin blockade region.
And when both Zeeman sub-levels of the QD near the source reservoir (probe QD) can be filled, we can expect the current to be strongly suppressed, which can be identified as a spin blockade.
It has been shown that the transport properties of the SCQD system exhibit several interesting features, including current rectification (due to the Pauli spin blockade), negative differential conductance, nonthermal broadening of tunneling current, and coherent tunneling in the Coulomb blockade regime[10].
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Spin around, spin, spin, spin.
We discuss implications for the spin-dephasing and Pauli blockade experiments.
Quantum dots are usually modeled as simple semiclassical capacitors to explain Coulomb blockade effect and spin-related transport phenomenon [6].
Angelakis, D. G., Santos, M. F. & Bose, S. Photon-blockade-induced Mott transitions and XY spin models in coupled cavity arrays.
The current spin polarizations for different angles in the voltage ranges out of the Coulomb blockade one now change with the bias voltage value, but their relative magnitudes somewhat keep constant.
Engel and Loss [Phys. Rev. Lett. 86 (2001) 004648] proposed how the spin-state can be read out via a charge current through the dot in the Coulomb blockade state.
In the Coulomb blockade region of ε d < eV < ε d + U, the difference between the current spin polarizations of different values of φ is greatly decreased, which is resulted from the Pauli exclusion principle.
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