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(07E134) Quasiparticle relaxation across the multiple superconducting gaps in the electron-doped BaFe_(1.85)Co_(0.15)As_2

机译:(07E134)在电子掺杂Bafe_(1.85)CO_(0.15)AS_2中的多个超导间隙上的Quasiparticle松弛

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We study the quasiparticle relaxation dynamics in the electron-doped superconductor, BaFe_(1.85)Co_(0.15)As_2 (BFCA) by using optical spectroscopy in both time and frequency domains. The estimate of the electron—phonon (el-ph) coupling constant from quasiparticle relaxation rate in time domain gives a value of ~0.16 that is much too small to give a T_C of 25 K. We obtain a negative value of the Coulomb pseudopotential that implies that the el—ph interaction alone is not strong enough to induce a superconducting transition in BFCA. More importantly, the electron-boson spectral function determined from optical scattering rate in frequency domain does not resemble the measured phonon density of states and has a dominant peak (at 53 meV) beyond the phonon frequencies. Our results support that the BFCA is a multi-gap s-wave superconductor and that its electron pairing is based on a spin-mediated pairing mechanism.
机译:通过在两个时间和频率域中使用光谱,我们在电子掺杂超导体,BAFE_(1.85)CO_(0.15)AS_2(BFCA)中的Quasiparticle弛豫动力学研究。从时域中的Quasiparticle弛豫速率达到常见的电子 - 声子(EL-pH)偶联的常数给出了〜0.16的值,这太小,不能给出25k的T_C。我们获得了库仑伪能量的负值意味着单独的EL-pH相互作用不足以诱导BFCA中的超导转变。更重要的是,从频域中的光散射速率确定的电子 - 玻体谱函数不像所测量的声音密度,并且具有超出声子频率的显性峰(在53mev)。我们的结果支持,BFCA是多个间隙S波超导体,并且其电子对基于自旋介导的配对机构。

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