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Observation of giant thermal noise due to multiple Andreev reflection in a ballistic SNS junction with an InGaAs-based heterostructure

机译:具有基于InGaAs的异质结构的弹性SNS结的多个AndreeV反射引起的巨热噪声观察

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We report on the fabrication of a ballistic SNS junction with a two-dimensional electron gas (2DEG) in an InGaAs-based heterostructure. We have observed the Josephson current as well as the subharmonic energy-gap structures caused by the MAR. Moreover, we experimentally estimated the thermal noise by comparing measured IV characteristics with those obtained with an extension of the Ambegaokar and Halperin theory. As a consequence, we have observed giant thermal noise that is much larger than that expected with normal reservoirs. The experimentally obtained "giant" thermal noise can be qualitatively explained by the Martín-Rodero theory that considers both the ballistic transport of the 2DEG and the thermal fluctuation in the coherent multiple Andreev reflection regime.
机译:我们在基于InGaAs的异质结构中用二维电子气(2deg)制造弹性SNS结的制造。我们已经观察到约瑟夫森电流以及由MAR引起的次谐能节能结构。此外,我们通过将测量的IV特性与具有Ambegaokar和Halperin理论的延伸获得的那些进行比较来实验估计热噪声。因此,我们观察到巨大的热噪声比普通储层的预期要大得多。实验所获得的“巨型”热噪声可以通过Martín-rodero理论来定性解释,所述Martín-rodero理论认为2deg的弹道传输和相干多的多发性反射制度中的热波动。

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