125 research outputs found

    Current driven magnetization dynamics in ferromagnetic nanowires with Dzyaloshinskii-Moriya interaction

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    We study current induced magnetization dynamics in a long thin ferromagnetic wire with Dzyaloshinskii-Moriya interaction (DMI). We find a spiral domain wall configuration of the magnetization and obtain an analytical expression for the width of the domain wall as a function of the interaction strengths. Our findings show that above a certain value of DMI a domain wall configuration cannot exist in the wire. Below this value we determine the domain wall dynamics for small currents, and calculate the drift velocity of the domain wall along the wire. We show that the DMI suppresses the minimum value of current required to move the domain wall. Depending on its sign, the DMI increases or decreases the domain wall drift velocity.Comment: 4 pages, 2 figure

    The spin resonance and high frequency optical properties of the cuprates

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    We argue that recently observed superconductivity-induced blue shift of the plasma frequency δωpl\delta \omega_{pl} in Bi2Sr2CaCu2O8+δBi_2Sr_2CaCu_2O_{8+\delta} is related to the change in the integrated dynamical structure factor associated with the development of the spin resonance below TcT_c. We show that the magnitude of δωpl\delta \omega_{pl} is consistent with the small integrated spectral weight of the resonance, and its temperature dependences closely follow that of the spin resonance peak.Comment: 5 pages, 3 figure

    Electric signature of magnetic domain-wall dynamics

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    We study current-induced domain-wall dynamics in a thin ferromagnetic nanowire. The domain-wall dynamics is described by simple equations with four parameters. We propose the procedure to determine these parameters by all-electric measurements of the time-dependent voltage induced by the domain-wall motion. We provide an analytical expression for the time variation of this voltage. Furthermore, we show that the measurement of the proposed effects is within reach with current experimental techniques.Comment: 5 pages, 5 figures, update to published versio
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