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T. Takakura

Publications and source records attributed to T. Takakura.

3 recordsLinked to original sources

Co-tunneling spin blockade observed in a three-terminal triple quantum dot

We prepare a triple quantum dot with a separate contact lead to each dot to study Pauli spin blockade in the tunnel-coupled three dots in a row. We measure the tunneling current flowing between the center dot and either the left or right dot with the left and right leads as a common source and the center lead as a drain. In the biased stability diagram, we establish Pauli spin blockade in the respective neighboring dots, with features similarly obtained in double quantum dot systems. We further realize Pauli spin blockade with two different conditions by tuning the inter-dot coupling gates: strong and weak inter-dot tunnel coupling regimes. In the strong-coupling regime we observe significant suppression of co-tunneling through the respective double dots due to Pauli spin blockade. We reveal the influence from the third dot in the triple dot device on this co-tunneling Pauli spin blockade and clarify that the co-tunneling Pauli spin blockade is lifted by the resonant coupling of excited states to the third dot level as well as spin exchange of the left and right dots with the adjacent reservoir.

cond-mat.mes-hall

Fast Electrical Control of Single Electron Spins in Quantum Dots with Vanishing Influence from Nuclear Spins

We demonstrate fast universal electrical spin manipulation with inhomogeneous magnetic fields. With fast Rabi frequency up to 127 MHz, we leave the conventional regime of strong nuclear-spin influence and observe a spin-flip fidelity > 96%, a distinct chevron Rabi pattern in the spectral-time domain, and spin resonance linewidth limited by the Rabi frequency, not by the dephasing rate. In addition, we establish fast z-rotations up to 54 MHz by directly controlling the spin phase. Our findings will significantly facilitate tomography and error correction with electron spins in quantum dots.

cond-mat.mes-hall

Static and dynamical dipolar / strain fluctuations in perovskite ferroelectric relaxors

We develop a theory to study the characteristics of dipolar / strain fluctuations in perovskite relaxors. In addition to the soft TO and TA phonons, we take into account another freedom of motion associated with the random hopping of $\mathrm{Pb^{2+}}$ ions between the off-center sites around the high symmetry corner site, thus constructing a coupled TO-TA-pseudospin model to describe the perovskite relaxors. It is shown that there is a possibility that prior to the on-set of instability of the uniform TO-mode (soft-mode), instability of TA mode with nanometer scale modulation $(\mathbf{q}\sim 0.1\mathbf{a}^{*})$ takes place, which produces static heterogeneous structure concerning polarization as well as shear strain. This seems to suggest the intrinsic origin of the heterogeneity in relaxors visualized as random distribution of PNR. The phonon spectral density distribution has also been investigated. It is shown that when the relaxation time of random hopping of $\mathrm{Pb^{2+}}$ ions is comparable to the TO phonon frequency at $\mathbf{q}\sim 0.1\mathbf{a}^{*}$, the calculated phonon spectral density reproduces the characteristic features called `waterfall'.

cond-mat.mtrl-sci