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Laser-Like Emission from a Sandwiched MoTe_2 Heterostructure on a Silicon Single-Mode Resonator

机译:硅单模谐振器上的三明治式MoTe_2异质结构的类似激光的发射。

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Molybdenum ditelluride (MoTe2) has recently shown promise as a gain material for silicon photonics. Reliable single-mode operation and material stability remain two of the major issues that need to be addressed to advance this exciting technology, however. Here, laser-like emission from a sandwiched MoTe2 heterostructure on a silicon single-mode resonator is reported. The heterostructure consists of a layer of MoTe2 sandwiched between thin films of hexagonal boron nitride. It is known that tellurium compounds are sensitive to oxygen exposure, which leads to rapid degradation of the exposed layers in air. By encapsulating the MoTe2 gain material, much improved environmental stability is observed. Using a recently introduced single-mode resonator design, better control over the mode spectrum of the cavity is exercised and single-mode operation with a wide free spectral range is demonstrated. At room temperature, a Q-factor of 4500 and a threshold of 4.2 kW cm(-2) at 1319 nm wavelength are achieved. These results lend further support to the paradigm of 2D material-based integrated light sources on the silicon platform.
机译:二碲化钼(MoTe2)最近显示出有望成为硅光子学的增益材料。但是,可靠的单模运行和材料稳定性仍然是推动这一令人兴奋的技术需要解决的两个主要问题。在此,报道了从硅单模谐振器上的夹层MoTe2异质结构发出的类激光发射。异质结构由夹在六方氮化硼薄膜之间的MoTe2层组成。已知碲化合物对氧暴露敏感,这导致暴露的层在空气中迅速降解。通过封装MoTe2增益材料,可以观察到大大改善的环境稳定性。使用最近推出的单模谐振器设计,可以更好地控制空腔的模谱,并证明了在宽自由光谱范围内的单模工作。在室温下,在1319 nm波长处达到了4500的Q因子和4.2 kW cm(-2)的阈值。这些结果为硅平台上基于2D材料的集成光源范例提供了进一步的支持。

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