Department of Materials Science & Engineering, Massachusetts Institute of Technology, Cambridge, MA, USA.
Lincoln Laboratory, Massachusetts Institute of Technology, Lexington, MA, USA.
Nat Commun. 2019 Sep 30;10(1):4279. doi: 10.1038/s41467-019-12196-4.
Optical phase change materials (O-PCMs), a unique group of materials featuring exceptional optical property contrast upon a solid-state phase transition, have found widespread adoption in photonic applications such as switches, routers and reconfigurable meta-optics. Current O-PCMs, such as Ge-Sb-Te (GST), exhibit large contrast of both refractive index (Δn) and optical loss (Δk), simultaneously. The coupling of both optical properties fundamentally limits the performance of many applications. Here we introduce a new class of O-PCMs based on Ge-Sb-Se-Te (GSST) which breaks this traditional coupling. The optimized alloy, GeSbSeTe, combines broadband transparency (1-18.5 μm), large optical contrast (Δn = 2.0), and significantly improved glass forming ability, enabling an entirely new range of infrared and thermal photonic devices. We further demonstrate nonvolatile integrated optical switches with record low loss and large contrast ratio and an electrically-addressed spatial light modulator pixel, thereby validating its promise as a material for scalable nonvolatile photonics.
光学相变材料(O-PCMs)是一组独特的材料,其在固态相变时具有出色的光学性能对比。它们已广泛应用于光子学领域,如开关、路由器和可重构超材料等。目前的 O-PCMs,如 Ge-Sb-Te(GST),同时具有较大的折射率(Δn)和光损耗(Δk)对比度。这两种光学性能的结合从根本上限制了许多应用的性能。在这里,我们引入了一类基于 Ge-Sb-Se-Te(GSST)的新型 O-PCMs,打破了这种传统的结合。优化后的合金 GeSbSeTe 结合了宽带透明性(1-18.5μm)、大的光学对比度(Δn=2.0)和显著提高的玻璃形成能力,为红外和热光子器件开辟了全新的应用领域。我们进一步演示了具有创纪录低损耗和大对比度比的非易失性集成光开关以及电寻址的空间光调制器像素,从而验证了其作为可扩展非易失性光子学材料的潜力。