AI Article Synopsis

  • Researchers demonstrated dual-wavelength switchable emission in InGaN quantum dot micro-cavity light-emitting diodes (MCLEDs) that can toggle between outputs at 498.5 nm and 541.7 nm by adjusting the injected current levels.
  • The microcavity effect allows for high spectral purity with a narrow linewidth of 0.21 nm, enabling deterministic mode switching in the green spectrum.
  • The study highlights design and fabrication techniques for controlled dual-wavelength operation, which can be utilized in applications like multi-wavelength optical recording and optical switches.

Article Abstract

Dual-wavelength switchable emission has been demonstrated in InGaN quantum dot (QD) micro-cavity light-emitting diodes (MCLEDs). By simply modulating the injected current levels, the output of the device can be dynamically tuned between the two distinct cavity modes at 498.5 and 541.7 nm, exhibiting deterministic mode switching in the green spectral range. Owing to the microcavity effect, high spectral purity with a narrow linewidth of 0.21 nm was obtained. According to the experimental and theoretical results, it can be concluded that the dual-wavelength switching for the investigated MCLEDs is ascribed to the broad and tunable gain of a thin InGaN QD active region, together with the mode selection and enhancement effect of the cavity. To provide additional guidelines for controllable dual-wavelength switchable operation in nitride-based light-emitting devices, detailed design and fabrication strategies are discussed. This work presents an effective method to achieve mode switching for practical applications such as multi-wavelength optical recording, frequency mixing, flip-flop and optical switches.

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Source
http://dx.doi.org/10.1364/OE.464527DOI Listing

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