Spectral Tuning of Perovskite Laser via Microheaters.

Meiler, Tim C; Wang, Yutao; Srivastava, Saurabh; Adamo, Giorgio; Paniagua-Domínguez, Ramón; Kuznetsov, Arseniy I; Soci, Cesare · Nano Lett · 2025

basic_science · Level V

Where this comes from

Abstract

Perovskites have recently brought significant advances to active nanophotonics, offering a unique combination of gain and phase-change properties for tunable light-emitting devices. However, current wavelength-tunable devices often rely on tuning mechanisms or device architectures that lead to slow modulation or bulky setups. Here, we demonstrate a compact tunable microlaser with electrical microheaters integrated beneath a perovskite metasurface, enabling efficient heating and rapid phase transitions. Our device leverages the optical gain, crystallographic phase tuning of the perovskite, and a high-quality factor cavity design based on bound states in the continuum. With it, we demonstrate reversible laser wavelength switching between 763 and 783 nm within 13 ms at 2.3 V. This work unlocks the potential of perovskite metasurfaces for electrically tunable light sources and introduces a flexible platform which can be easily extended to the dynamic control of polarization or directionality for optical communication, sensing, and spectroscopy.