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HTSC polaronic quasiparticle injection devices with an organic copper (II) phthalocyanine injector

机译:具有有机铜(II)酞菁注射器的HTSC极化子准粒子注射装置

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We report the nonequilibrium effect of polaronic quasiparticle (QP) injection using an organic injector in a high T/sub c/ three terminal device. The organic, copper (II) phthalocyanine (Cu-Pc), used as the injector, is a photoconductor and a p-type semiconductor. The transport properties of Au/Cu-Pc/Bi/sub 2/Sr/sub 2/CaCu/sub 2/O/sub 8+/spl delta// (BSCCO) tunnel junctions were investigated in the dark and under the He-Ne laser (/spl lambda/=632.8 nm) radiation. We observed that the injection of polaronic QP from the organic Cu-Pc film into the BSCCO film generated a substantially larger nonequilibrium effect as compared to the normal QP injection current. We could increase the current gain by He-Ne laser excitation of the organic photoconductor injector. The tunneling spectroscopy of a Cu-Pc/BSCCO junction exhibited an enhancement of the zero bias conductance peak under the He-Ne laser excitation. The above phenomena are of importance in developing optically controlled three terminal superconducting devices.
机译:我们报告了在高T / sub c /三终端设备中使用有机注射器的极化子准粒子(QP)注射的非平衡效应。用作注射器的有机铜(II)酞菁铜(Cu-Pc)是光电导体和p型半导体。在黑暗和He-下研究了Au / Cu-Pc / Bi / sub 2 / Sr / sub 2 / CaCu / sub 2 / O / sub 8 + / spl delta //(BSCCO)隧道结的传输特性Ne激光(/ spl lambda / = 632.8 nm)辐射。我们观察到,与正常QP注入电流相比,将极化子QP从有机Cu-Pc膜注入BSCCO膜会产生明显更大的非平衡效应。我们可以通过He-Ne激光激发有机光电导体注入器来增加电流增益。在He-Ne激光激发下,Cu-Pc / BSCCO结的隧道光谱显示出零偏压电导峰的增强。上述现象对于开发光控三端超导装置很重要。

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