Electrons with a linear energy/momentum dispersion are called massless Dirac electrons and represent the low-energy excitations in exotic materials such as graphene and topological insulators. Dirac electrons are characterized by notable properties such as a high mobility, a tunable density and, in topological insulators, a protection against backscattering through the spin-momentum locking mechanism. All those properties make graphene and topological insulators appealing for plasmonics applications. However, Dirac electrons are expected to present also a strong nonlinear optical behaviour. This should mirror in phenomena such as electromagnetic-induced transparency and harmonic generation. Here we demonstrate that in Bi2Se3 topological insulator, an electromagnetic-induced transparency is achieved under the application of a strong terahertz electric field. This effect, concomitantly determined by harmonic generation and charge-mobility reduction, is exclusively related to the presence of Dirac electron at the surface of Bi2Se3, and opens the road towards tunable terahertz nonlinear optical devices based on topological insulator materials.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4853424PMC
http://dx.doi.org/10.1038/ncomms11421DOI Listing

Publication Analysis

Top Keywords

topological insulator
12
dirac electrons
12
topological insulators
12
strong nonlinear
8
bi2se3 topological
8
graphene topological
8
nonlinear optical
8
electromagnetic-induced transparency
8
harmonic generation
8
topological
6

Similar Publications

BiTe, a member of the (Bi2)m(Bi2Te3)n homologous series, possesses natural van der Waals-like heterostructure with a Bi2 bilayer sandwiched between the two [Te-Bi-Te-Bi-Te] quintuple layers. BiTe exhibits both the quantum states of weak topological and topological crystalline insulators, making it a dual topological insulator and a suitable candidate for spintronics, quantum computing and thermoelectrics. Herein, we demonstrate that the chemical bonding in BiTe is to be metavalent, which plays a significant role in the pressure dependent change in the topology of the electronic structure Fermi surface.

View Article and Find Full Text PDF

Spin transport properties in a topological insulator sandwiched between two-dimensional magnetic layers.

Sci Rep

January 2025

Department of Applied Physics, School of Engineering Sciences, KTH Royal Institute of Technology, AlbaNova University Center, SE-10691, Stockholm, Sweden.

Non-trivial band topology along with magnetism leads to different novel quantum phases. When time-reversal symmetry is broken in three-dimensional topological insulators (TIs) through, e.g.

View Article and Find Full Text PDF

A new class of higher-order topological insulators that localize energy at arbitrary multiple sites.

Sci Bull (Beijing)

January 2025

Department of Mechanics and Engineering Science, College of Engineering, Peking University, Beijing 100871, China. Electronic address:

Z-classified topological phases lead to a larger-than-unity number of topological states. However, these multiple topological states are only localized at the corners in nonlocal systems. Here, first, we rigorously prove that the multiple topological states of nonlocal Su-Schrieffer-Heeger (SSH) chains can be inherited and realized by local aperiodic chains with only the nearest couplings.

View Article and Find Full Text PDF

Scaling theory for non-Hermitian topological transitions.

J Phys Condens Matter

January 2025

Theoretical Science, Poornaprajna Institute of Scientific Research, Ranjith Kumar R, Department of Physics, Indian Institute of Technoloby Bombay, Mumbai, 400076, INDIA.

Understanding the critical properties is essential for determining the physical behavior of topological systems. In this context, scaling theories based on the curvature function in momentum space, the renormalization group (RG) method, and the universality of critical exponents have proven effective. In this work, we develop a scaling theory for non-Hermitian topological states of matter.

View Article and Find Full Text PDF

The topological disclination state (TDS) in topological insulators (TIs) has strong localization, and its impact on nonlinear effects has garnered significant attention. Second harmonic generations (SHGs) have been proven to be generated individually in topological corner states and topological edge states. However, the SHGs in TDSs have not been discussed so far.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!