Active Beam Steering Enabled by Photonic-Crystal Surface-Emitting Laser.

ACS Nano

A Laboratory of Solid State Optoelectronics Information Technology, Institute of Semiconductors, CAS, Beijing 100083, China.

Published: July 2024

AI Article Synopsis

  • Emitting light in specific directions is crucial for technologies like communication and displays, but current methods are bulky and inefficient.
  • Researchers have designed a new type of directional emitter that uses a compact laser based on photonic crystals for dynamic beam steering.
  • This laser allows for rapid adjustment of light direction, achieving a small beam steering range and maintaining efficiency, which could benefit various applications in automotive and robotics.

Article Abstract

Emitting light toward on-demand directions is important for various optoelectronic applications, such as optical communication, displaying, and ranging. However, almost all existing directional emitters are assemblies of passive optical antennae and external light sources, which are usually bulky and fragile and show unendurable loss of light power. Here we theoretically propose and experimentally demonstrate a conceptual design of a directional emitter, by using a single surface-emitting laser source itself to achieve dynamically controlled beam steering. The laser is built on photonic crystals that operate near the band edges in the continuum. By shrinking laser sizes to tens-of-wavelength, the optical modes quantize in three-dimensional momentum space, and each of them directionally radiates toward the far-field. Further utilizing the luminescence spectrum shifting effect under current injection, we consecutively select a sequence of modes into lasing action and show the laser maintaining single-mode operation with line widths at a minimum of 1.8 MHz and an emitting power of ∼10 milliwatts, and we demonstrate fast beam steering across a range of 3.2° × 4° on a time scale of 500 ns. Our work proposes a method for on-chip active beam steering for the development of automotive, industrial, and robotic applications.

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Source
http://dx.doi.org/10.1021/acsnano.3c09793DOI Listing

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