Patimisco Pietro, Sampaolo Angelo, Mihai Laura, Giglio Marilena, Kriesel Jason, Sporea Dan, Scamarcio Gaetano, Tittel Frank K, Spagnolo Vincenzo
Dipartimento Interateneo di Fisica, Università degli studi di Bari Aldo Moro e Politecnico di Bari, Via Amendola 173, Bari I-70126, Italy.
Department of Electrical and Computer Engineering, Rice University, 6100 Main Street, Houston, TX 77005, USA.
Sensors (Basel). 2016 Apr 13;16(4):533. doi: 10.3390/s16040533.
We demonstrated low-loss and single-mode laser beam delivery through hollow-core waveguides (HCWs) operating in the 3.7-7.6 μm spectral range. The employed HCWs have a circular cross section with a bore diameter of 200 μm and metallic/dielectric internal coatings deposited inside a glass capillary tube. The internal coatings have been produced to enhance the spectral response of the HCWs in the range 3.5-12 µm. We demonstrated Gaussian-like outputs throughout the 4.5-7.6 µm spectral range. A quasi single-mode output beam with only small beam distortions was achieved when the wavelength was reduced to 3.7 μm. With a 15-cm-long HCW and optimized coupling conditions, we measured coupling efficiencies of >88% and transmission losses of <1 dB in the investigated infrared spectral range.
我们展示了通过在3.7 - 7.6μm光谱范围内工作的空心波导(HCW)实现低损耗和单模激光束传输。所采用的HCW具有圆形横截面,内径为200μm,在玻璃毛细管内部沉积有金属/电介质内涂层。制备内涂层是为了增强HCW在3.5 - 12μm范围内的光谱响应。我们在整个4.5 - 7.6μm光谱范围内展示了类似高斯的输出。当波长降至3.7μm时,实现了仅具有小光束畸变的准单模输出光束。使用一根15厘米长的HCW并优化耦合条件,我们在所研究的红外光谱范围内测得耦合效率>88%,传输损耗<1dB。