Literature DB >> 33408324

Direct quantification of topological protection in symmetry-protected photonic edge states at telecom wavelengths.

Sonakshi Arora1, Thomas Bauer1, René Barczyk2, Ewold Verhagen2, L Kuipers3.   

Abstract

Topological on-chip photonics based on tailored photonic crystals (PhCs) that emulate quantum valley-Hall effects has recently gained widespread interest owing to its promise of robust unidirectional transport of classical and quantum information. We present a direct quantitative evaluation of topological photonic edge eigenstates and their transport properties in the telecom wavelength range using phase-resolved near-field optical microscopy. Experimentally visualizing the detailed sub-wavelength structure of these modes propagating along the interface between two topologically non-trivial mirror-symmetric lattices allows us to map their dispersion relation and differentiate between the contributions of several higher-order Bloch harmonics. Selective probing of forward- and backward-propagating modes as defined by their phase velocities enables direct quantification of topological robustness. Studying near-field propagation in controlled defects allows us to extract upper limits of topological protection in on-chip photonic systems in comparison with conventional PhC waveguides. We find that protected edge states are two orders of magnitude more robust than modes of conventional PhC waveguides. This direct experimental quantification of topological robustness comprises a crucial step toward the application of topologically protected guiding in integrated photonics, allowing for unprecedented error-free photonic quantum networks.

Entities:  

Year:  2021        PMID: 33408324     DOI: 10.1038/s41377-020-00458-6

Source DB:  PubMed          Journal:  Light Sci Appl        ISSN: 2047-7538            Impact factor:   17.782


  3 in total

Review 1.  Advances and Prospects in Topological Nanoparticle Photonics.

Authors:  Marie S Rider; Álvaro Buendía; Diego R Abujetas; Paloma A Huidobro; José A Sánchez-Gil; Vincenzo Giannini
Journal:  ACS Photonics       Date:  2022-05-04       Impact factor: 7.077

2.  Observing 0D subwavelength-localized modes at ~100 THz protected by weak topology.

Authors:  Jinlong Lu; Konstantin G Wirth; Wenlong Gao; Andreas Heßler; Basudeb Sain; Thomas Taubner; Thomas Zentgraf
Journal:  Sci Adv       Date:  2021-12-01       Impact factor: 14.136

3.  On-chip nanophotonic topological rainbow.

Authors:  Cuicui Lu; Yi-Zhi Sun; Chenyang Wang; Hongyu Zhang; Wen Zhao; Xiaoyong Hu; Meng Xiao; Wei Ding; Yong-Chun Liu; C T Chan
Journal:  Nat Commun       Date:  2022-05-11       Impact factor: 14.919

  3 in total

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