Tsutsumi Yasumasa
Department of Basic Science, University of Tokyo, Meguro, Tokyo 153-8902, Japan.
Phys Rev Lett. 2017 Apr 7;118(14):145301. doi: 10.1103/PhysRevLett.118.145301. Epub 2017 Apr 5.
We have formulated the scattering theory on Majorana fermions emerging in the surface bound state of the superfluid ^{3}He B phase (^{3}He-B) by an impurity. By applying the theory to the electron bubble, which is regarded as the impurity, trapped below a free surface of ^{3}He-B, the observed mobility of the electron bubble [J. Phys. Soc. Jpn. 82, 124607 (2013)JUPSAU0031-901510.7566/JPSJ.82.124607] is quantitatively reproduced. The mobility is suppressed in low temperatures from the expected value in the bulk ^{3}He-B by the contribution from the surface Majorana fermions. By contrast, the mobility does not depend on the trapped depth of the electron bubble in spite of the spatial variation of the wave function of the surface Majorana fermions. Our formulated theory demonstrates the depth-independent mobility by considering intermediate states in the scattering process. Therefore, we conclude that the experiment has succeeded in observing Majorana fermions in the surface bound state.
我们已经建立了关于超流³He B相(³He-B)表面束缚态中由杂质产生的马约拉纳费米子的散射理论。通过将该理论应用于被视为杂质的电子泡,该电子泡被困在³He-B的自由表面下方,从而定量再现了观测到的电子泡迁移率[《日本物理学会杂志》82, 124607 (2013)JUPSAU0031 - 901510.7566/JPSJ.82.124607]。在低温下,由于表面马约拉纳费米子的贡献,迁移率相对于³He-B体中的预期值受到抑制。相比之下,尽管表面马约拉纳费米子波函数存在空间变化,但迁移率并不依赖于电子泡的捕获深度。我们建立的理论通过考虑散射过程中的中间态证明了迁移率与深度无关。因此,我们得出结论,该实验成功观测到了表面束缚态的马约拉纳费米子。