scholarly journals Passage from Spin-Polarized Surface States to Unpolarized Quantum Well States in Topologically Nontrivial Sb Films

2011 ◽  
Vol 107 (3) ◽  
Author(s):  
G. Bian ◽  
T. Miller ◽  
T.-C. Chiang
2012 ◽  
Vol 606 (11-12) ◽  
pp. 950-955 ◽  
Author(s):  
Madhura Marathe ◽  
Jérôme Lagoute ◽  
Vincent Repain ◽  
Sylvie Rousset ◽  
Shobhana Narasimhan

Hyomen Kagaku ◽  
2010 ◽  
Vol 31 (9) ◽  
pp. 493-499
Author(s):  
Yasuo TAKEICHI ◽  
Ke HE ◽  
Taichi OKUDA ◽  
Toru HIRAHARA ◽  
Akito KAKIZAKI ◽  
...  

1995 ◽  
Vol 51 (8) ◽  
pp. 5586-5589 ◽  
Author(s):  
R. Mégy ◽  
A. Bounouh ◽  
Y. Suzuki ◽  
P. Beauvillain ◽  
P. Bruno ◽  
...  

1999 ◽  
Vol 203 (1-3) ◽  
pp. 126-128 ◽  
Author(s):  
J.E. Ortega ◽  
A. Närmann ◽  
K.N. Altmann ◽  
W. O'Brien ◽  
D.J. Seo ◽  
...  

2021 ◽  
Vol 7 (14) ◽  
pp. eabe5748
Author(s):  
X. Sun ◽  
G. Adamo ◽  
M. Eginligil ◽  
H. N. S. Krishnamoorthy ◽  
N. I. Zheludev ◽  
...  

One of the most notable manifestations of electronic properties of topological insulators is the dependence of the photocurrent direction on the helicity of circularly polarized optical excitation. The helicity-dependent photocurrents, underpinned by spin-momentum locking of surface Dirac electrons, are weak and easily overshadowed by bulk contributions. Here, we show that the chiral response can be enhanced by nanostructuring. The tight confinement of electromagnetic fields in the resonant nanostructure enhances the photoexcitation of spin-polarized surface states of topological insulator Bi1.5Sb0.5Te1.8Se1.2, leading to an 11-fold increase of the circular photogalvanic effect and a previously unobserved photocurrent dichroism (ρcirc = 0.87) at room temperature. The control of spin transport in topological materials by structural design is a previously unrecognized ability of metamaterials that bridges the gap between nanophotonics and spin electronics, providing opportunities for developing polarization-sensitive photodetectors.


2006 ◽  
Vol 73 (4) ◽  
Author(s):  
B. Lazarovits ◽  
L. Szunyogh ◽  
P. Weinberger

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