【物理格致论坛第58期】芯片光谱仪研究综述及展望

信息来源:88858cc永利官网学院办公室   点击次数:  发布时间:2019-11-11

一、题目:芯片光谱仪研究综述及展望

二、主讲人:马骁

三、时间:20191114日(星期四)下午1400

 四、地点:闻理园A4-222


内容摘要:介绍了芯片光谱仪发展的现状并对其未来演进以及在实际应用中的潜力进行了展望。结合主讲人本身的研究经历,对色散型、傅里叶变换型、滤波型以及指纹型这四种主要的芯片光谱仪方案进行了讨论,简述了四种类型芯片光谱仪的工作原理、研究概况,对它们的工作特性进行了比较,并对未来芯片光谱仪的研究思路进行了梳理。

主讲人简介:马骁, 浙江大学光电学院博士,曾在华为、奇芯等业内知名企业从事光芯片研究及设计,现为浙江大学光电学院博士后。主要从事光通信、光互连、光传感、光计算等领域芯片研究。已经发表SCI论文多篇并拥有多项发明专利。

参考文献

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[2].    Xiao Ma, Jun Zou, Wenhuan Li, Jian-Jun He, “Miniature spectrometer based on Fourier transform spectrometer chip and commercial photodetector array”, Chinese Optics Letters, vol. 17, no. 12, pp.12, 2019

[3].    Xiao Ma, Mingyu Li, Jian-Jun He, “CMOS-compatible integrated spectrometer based on Etched diffraction grating and MSM photodetector array”, IEEE Photonics Journal, vol. 5, no. 2, pp. 6600807-6600813, 2013

[4].    Xiao Ma, Jianjun He, and Mingyu Li, “Echelle diffraction grating based high-resolution spectrometer-on-a-chip on SiON waveguide platform”, Chinese Optics Letters, vol. 11, no. 3, pp. 032501-032504, 2013

[5].    Brandon Redding, Seng Fatt Liew, Yaron Bromberg, Raktim Sarma, and Hui CaoEvanescently coupled multimode spiral spectrometerOptica vol. 3, no. 9, pp. 956-962, 2016.

[6].    Brandon Redding, Seng Fatt Liew, Raktim Sarma and Hui Cao, “Compact spectrometer based on a disordered photonic chip”, Nature Photonics, vol. 7, pp. 746-751, 2013.

[7].    X. Nie et al., “CMOS-compatible broadband co-propagative stationary Fourier transform spectrometer integrated on a silicon nitride photonics platform”, Optics Express, vol. 25, No. 8, pp. 284785, 2017.


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