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相干极化激元气体的超快三稳态自旋记忆。

Ultrafast tristable spin memory of a coherent polariton gas.

机构信息

Laboratory of Quantum Optoelectronics LOEQ, Institute of Condensed Matter Physics, EPFL, CH-1015 Lausanne, Switzerland.

出版信息

Nat Commun. 2013;4:2008. doi: 10.1038/ncomms3008.

Abstract

Non-linear interactions in coherent gases are not only at the origin of bright and dark solitons and superfluids; they also give rise to phenomena such as multistability, which hold great promise for the development of advanced photonic and spintronic devices. In particular, spinor multistability in strongly coupled semiconductor microcavities shows that the spin of hundreds of exciton-polaritons can be coherently controlled, opening the route to spin-optronic devices such as ultrafast spin memories, gates or even neuronal communication schemes. Here we demonstrate that switching between the stable spin states of a driven polariton gas can be controlled by ultrafast optical pulses. Although such a long-lived spin memory necessarily relies on strong and anisotropic spinor interactions within the coherent polariton gas, we also highlight the crucial role of non-linear losses and formation of a non-radiative particle reservoir for ultrafast spin switching.

摘要

相干气体中的非线性相互作用不仅是亮暗孤子和超流的起源;它们还会产生多稳定性等现象,这为先进的光子和自旋电子器件的发展带来了巨大的希望。特别是,强耦合半导体微腔中的旋量多稳定性表明,数百个激子极化激元的自旋可以相干地控制,为超快自旋存储器、门,甚至神经元通信方案等自旋光电子器件的发展开辟了道路。在这里,我们证明了驱动极化激子气体中稳定自旋态之间的转换可以通过超快光脉冲来控制。尽管这种长寿命的自旋存储器必然依赖于相干极化激子气体中强且各向异性的旋量相互作用,但我们也强调了非线性损耗和非辐射粒子库的形成对于超快自旋转换的关键作用。

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