TY - JOUR
T1 - Topological insulator laser
T2 - Theory
AU - Harari, Gal
AU - Bandres, Miguel A.
AU - Lumer, Yaakov
AU - Rechtsman, Mikael C.
AU - Chong, Y. D.
AU - Khajavikhan, Mercedeh
AU - Christodoulides, Demetrios N.
AU - Segev, Mordechai
N1 - Publisher Copyright:
2017 © The Authors, some rights reserved.
PY - 2018/3/16
Y1 - 2018/3/16
N2 - Topological insulators are phases of matter characterized by topological edge States that propagate in a unidirectional manner that is robust to imperfections and disorder. These attributes make topological insulator systems ideal candidates for enabling applications in quantum computation and spintronics. We propose a concept that exploits topological effects in a unique way: the topological insulator laser. These are lasers whose lasing mode exhibits topologically protected transport without magnetic fields. The underlying topological properties lead to a highly efficient laser, robust to defects and disorder, with single-mode lasing even at very high gain values. The topological insulator laser alters current understanding of the interplay between disorder and lasing, and at the same time opens exciting possibilities in topological physics, such as topologically protected transport in systems with gain. On the technological side, the topological insulator laser provides a route to arrays of semiconductor lasers that operate as one single-mode high-power laser coupled efficiently into an output port.
AB - Topological insulators are phases of matter characterized by topological edge States that propagate in a unidirectional manner that is robust to imperfections and disorder. These attributes make topological insulator systems ideal candidates for enabling applications in quantum computation and spintronics. We propose a concept that exploits topological effects in a unique way: the topological insulator laser. These are lasers whose lasing mode exhibits topologically protected transport without magnetic fields. The underlying topological properties lead to a highly efficient laser, robust to defects and disorder, with single-mode lasing even at very high gain values. The topological insulator laser alters current understanding of the interplay between disorder and lasing, and at the same time opens exciting possibilities in topological physics, such as topologically protected transport in systems with gain. On the technological side, the topological insulator laser provides a route to arrays of semiconductor lasers that operate as one single-mode high-power laser coupled efficiently into an output port.
UR - https://www.scopus.com/pages/publications/85041576998
UR - https://www.scopus.com/inward/citedby.url?scp=85041576998&partnerID=8YFLogxK
U2 - 10.1126/science.aar4003
DO - 10.1126/science.aar4003
M3 - Article
C2 - 29420260
AN - SCOPUS:85041576998
SN - 0036-8075
VL - 359
JO - Science
JF - Science
IS - 6381
M1 - eaar4003
ER -