Extreme Polarization Anisotropy in Resonant Third‐Harmonic Generation from Aligned Carbon Nanotube Films

Author:

Zhu Song1,Li Wenkai2,Yu Shengjie34,Komatsu Natsumi3,Baydin Andrey3,Wang Fakun1,Sun Fangyuan1,Wang Chongwu1,Chen Wenduo1,Tan Chuan Seng1,Liang Houkun5,Yomogida Yohei6,Yanagi Kazuhiro6,Kono Junichiro378910,Wang Qi Jie110ORCID

Affiliation:

1. School of Electrical and Electronic Engineering Nanyang Technological University Singapore 639798 Singapore

2. State Key Laboratory of High Field Laser Physics Shanghai Institute of Optics and Fine Mechanics Chinese Academy of Sciences Shanghai 201800 China

3. Department of Electrical and Computer Engineering Rice University Houston TX 77005 USA

4. Applied Physics Graduate Program Smalley‐Curl Institute Rice University Houston TX 77005 USA

5. School of Electronics and Information Engineering Sichuan University Chengdu Sichuan 610064 China

6. Department of Physics Tokyo Metropolitan University Hachioji Tokyo 192‑0397 Japan

7. Department of Physics and Astronomy Rice University Houston TX 77005 USA

8. Department of Materials Science and NanoEngineering Rice University Houston TX 77005 USA

9. Smalley‐Curl Institute Rice University Houston TX 77005 USA

10. School of Physical and Mathematical Sciences Nanyang Technological University Singapore 637371 Singapore

Abstract

AbstractCarbon nanotubes (CNTs) possess extremely anisotropic electronic, thermal, and optical properties owing to their 1D character. While their linear optical properties have been extensively studied, nonlinear optical processes, such as harmonic generation for frequency conversion, remain largely unexplored in CNTs, particularly in macroscopic CNT assemblies. In this work, macroscopic films of aligned and type‐separated (semiconducting and metallic) CNTs are synthesized and polarization‐dependent third‐harmonic generation (THG) from the films with fundamental wavelengths ranging from 1.5 to 2.5 µm is studied. Both films exhibited strongly wavelength‐dependent, intense THG signals, enhanced through exciton resonances, and third‐order nonlinear optical susceptibilities of 2.50 × 10−19 m2 V−2 (semiconducting CNTs) and 1.23 × 10−19 m2 V−2 (metallic CNTs), respectively are found, for 1.8 µm excitation. Further, through systematic polarization‐dependent THG measurements, the values of all elements of the susceptibility tensor are determined, verifying the macroscopically 1D nature of the films. Finally, polarized THG imaging is performed to demonstrate the nonlinear anisotropy in the large‐size CNT film with good alignment. These findings promise applications of aligned CNT films in mid‐infrared frequency conversion, nonlinear optical switching, polarized pulsed lasers, polarized long‐wave detection, and high‐performance anisotropic nonlinear photonic devices.

Funder

National Medical Research Council

Welch Foundation

National Science Foundation

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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