Strategies for high performance and scalable on-chip spectrometers
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Xiaomu Wang | Junzhuan Wang | Binjie Zheng | Binjie Zheng | Junzhuan Wang | Xiaomu Wang | Binjie Zheng | Xiaomu Wang | Junzhuan Wang
[1] Yuval Garini,et al. Spectral imaging: Principles and applications , 2006, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[2] I. Kaminow,et al. Metal‐diffused optical waveguides in LiNbO3 , 1974 .
[3] Kurt Busch,et al. Waveguide‐Integrated Broadband Spectrometer Based on Tailored Disorder , 2020, Advanced Optical Materials.
[4] Toralf Scharf,et al. Standing wave integrated Fourier transform spectrometer for imaging spectrometry in the near infrared , 2015, SPIE Optical Engineering + Applications.
[5] Limin Tong,et al. Single-nanowire spectrometers , 2019, Science.
[6] M. Bawendi,et al. A colloidal quantum dot spectrometer , 2015, Nature.
[7] Yi Shi,et al. On‐Chip Measurement of Photoluminescence with High Sensitivity Monolithic Spectrometer , 2020, Advanced Optical Materials.
[8] Noel H. Wan,et al. High-resolution optical spectroscopy using multimode interference in a compact tapered fibre , 2015, Nature Communications.
[9] I. Kymissis,et al. Photonic crystal spectrometer. , 2010, Optics express.
[10] G. M. Yee,et al. Miniature spectrometers for biochemical analysis , 1997 .
[11] Reinoud F. Wolffenbuttel,et al. State-of-the-art in integrated optical microspectrometers , 2004, IEEE Transactions on Instrumentation and Measurement.
[12] Nicky Dean. Colouring at the nanoscale. , 2015, Nature nanotechnology.
[13] Rachel Grange,et al. An integrated broadband spectrometer on thin-film lithium niobate , 2019, Nature Photonics.
[14] D. Englund,et al. A high-resolution spectrometer based on a compact planar two dimensional photonic crystal cavity array , 2012 .
[15] Siegfried Janz,et al. Subwavelength grating Fourier‐transform interferometer array in silicon‐on‐insulator , 2013 .
[16] Simone Fohrmann,et al. Surface plasmon resonance based integrable micro spectrometer , 2015 .
[17] P. Royer,et al. Wavelength-scale stationary-wave integrated Fourier-transform spectrometry , 2007, 0708.0272.
[18] Corrado Sciancalepore,et al. Low-Crosstalk Fabrication-Insensitive Echelle Grating Demultiplexers on Silicon-on-Insulator , 2015, IEEE Photonics Technology Letters.
[19] Pengyu Fan,et al. Tuning the color of silicon nanostructures. , 2010, Nano letters.
[20] Hong Cai,et al. A Single-Chip Integrated Spectrometer via Tunable Microring Resonator Array , 2019, IEEE Photonics Journal.
[21] Xiang Guo,et al. Broadband on-chip single-photon spectrometer , 2019, Nature Communications.
[22] D. Khalil,et al. Fourier transform spectrometer based on Fabry-Perot interferometer. , 2016, Applied optics.
[23] Andreas Kenda,et al. A compact and portable IR analyzer: progress of a MOEMS FT-IR system for mid-IR sensing , 2011, Defense + Commercial Sensing.
[24] Hui Wang,et al. High-performance compact spectrometer based on multimode interference in a tapered spiral-shaped waveguide. , 2019, Optics express.
[25] D. Van Thourhout,et al. Silicon-on-Insulator Spectral Filters Fabricated With CMOS Technology , 2010, IEEE Journal of Selected Topics in Quantum Electronics.
[26] P. Lindblom,et al. Spectroscopy with the MEGA spectrometer, a very‐high‐resolution grating spectrometer , 1990 .
[27] Pedro Martín-Mateos,et al. Direct hyperspectral dual-comb imaging , 2020, Optica.
[28] Diaa Khalil,et al. On-Chip Micro–Electro–Mechanical System Fourier Transform Infrared (MEMS FT-IR) Spectrometer-Based Gas Sensing , 2016, Applied spectroscopy.
[29] Seyedeh Mahsa Kamali,et al. Compact folded metasurface spectrometer , 2018, Nature Communications.
[30] Zhaxylyk A. Kudyshev,et al. Colors with plasmonic nanostructures: A full-spectrum review , 2019 .
[31] Pavel Cheben,et al. Demonstration of a compressive-sensing Fourier-transform on-chip spectrometer. , 2017, Optics letters.
[32] Ali Adibi,et al. Multimodal multiplex spectroscopy using photonic crystals. , 2003, Optics express.
[33] Christina P. Bacon,et al. Miniature spectroscopic instrumentation: Applications to biology and chemistry , 2004 .
[34] Aristide Dogariu,et al. Transmission matrices of random media: means for spectral polarimetric measurements. , 2010, Optics letters.
[35] Siegfried Janz,et al. Temperature dependence mitigation in stationary Fourier-transform on-chip spectrometers. , 2017, Optics letters.
[36] S. Babin,et al. Multiband wavelength demultiplexer based on digital planar holography for on-chip spectroscopy applications. , 2012, Optics letters.
[37] Yuan Yao,et al. A High-Performance Spectrometer with Two Spectral Channels Sharing the Same BSI-CMOS Detector , 2018, Scientific Reports.
[38] Giuseppe Carlo Calafiore,et al. Holographic planar lightwave circuit for on-chip spectroscopy , 2014, Light: Science & Applications.
[39] Xiangang Luo,et al. Plasmonic nanoresonators for high-resolution colour filtering and spectral imaging. , 2010, Nature communications.
[40] T. Hirschfeld,et al. Fellgett's Advantage in uv-VIS Multiplex Spectroscopy , 1976 .
[41] Wei Lu,et al. Concept of a high-resolution miniature spectrometer using an integrated filter array. , 2007, Optics letters.
[42] Dietmar Sander,et al. Selffocussing phase transmission grating for an integrated optical microspectrometer , 2001 .
[43] C. Ong,et al. Imaging Spectroscopy for the Detection, Assessment and Monitoring of Natural and Anthropogenic Hazards , 2019, Surveys in Geophysics.
[44] Etienne le Coarer,et al. Stationary Wave Integrated Fourier Transform Spectrometer (SWIFTS) , 2010, OPTO.
[45] Byung Il Choi,et al. Filter-Based Miniature Spectrometers: Spectrum Reconstruction Using Adaptive Regularization , 2011, IEEE Sensors Journal.
[46] Stefano Cabrini,et al. Fabrication of novel digital optical spectrometer on chip , 2009 .
[47] M. Kats,et al. Single-shot on-chip spectral sensors based on photonic crystal slabs , 2019, Nature Communications.
[48] T. Baba,et al. Very Compact Arrayed-Waveguide-Grating Demultiplexer Using Si Photonic Wire Waveguides , 2004 .
[49] Patricia Yang Liu,et al. Microring resonator-assisted Fourier transform spectrometer with enhanced resolution and large bandwidth in single chip solution , 2019, Nature Communications.
[50] Y. Vlasov,et al. High Resolution On-chip Spectroscopy Based on Miniaturized Microdonut Resonators References and Links , 2022 .
[51] Hans Peter Herzig,et al. Lippmann waveguide spectrometer with enhanced throughput and bandwidth for space and commercial applications. , 2018, Optics express.
[52] Tian Gu,et al. High-performance and scalable on-chip digital Fourier transform spectroscopy , 2018, Nature Communications.
[53] H. Cao,et al. Compact spectrometer based on a disordered photonic chip , 2013, Nature Photonics.
[54] Yi-ping Cui,et al. Implementation of a Highly-Sensitive and Wide-Range Frequency Measurement Using a Si3N4 MDR-Based Optoelectronic Oscillator , 2019, IEEE Photonics Journal.
[55] John Strong,et al. Lamellar Grating Far-Infrared Interferomer , 1960 .
[56] W. Bogaerts,et al. On-Chip Arrayed Waveguide Grating Interrogated Silicon-on-Insulator Microring Resonator-Based Gas Sensor , 2011, IEEE Photonics Technology Letters.
[57] Kenneth B. Crozier,et al. Silicon microspectrometer chip based on nanostructured fishnet photodetectors with tailored responsivities and machine learning , 2019, Optica.
[58] W. Barnes,et al. Surface plasmon subwavelength optics , 2003, Nature.
[59] Andy Lambrechts,et al. A compact snapshot multispectral imager with a monolithically integrated per-pixel filter mosaic , 2014, Photonics West - Micro and Nano Fabricated Electromechanical and Optical Components.
[60] M. Pearson,et al. Planar waveguide echelle gratings in silica-on-silicon , 2004, IEEE Photonics Technology Letters.
[61] Kurt Busch,et al. Broadband spectrometer with single-photon sensitivity exploiting tailored disorder. , 2020, Nano letters.
[62] Louis E. Brus,et al. A simple model for the ionization potential, electron affinity, and aqueous redox potentials of small semiconductor crystallites , 1983 .
[63] Jiajun Meng,et al. Detector-only spectrometer based on structurally-colored silicon nanowires and a reconstruction algorithm. , 2019, Nano letters.
[64] M. Deen,et al. Design of a flat field concave-grating-based micro-Raman spectrometer for environmental applications. , 2012, Applied optics.
[65] Hakan Urey,et al. High-speed broadband FTIR system using MEMS. , 2014, Applied optics.
[66] M. Gather,et al. Advances in small lasers , 2014, Nature Photonics.
[67] Stefano Cabrini,et al. Digital optical spectrometer-on-chip , 2009 .
[68] Siegfried Janz,et al. Multiaperture planar waveguide spectrometer formed by arrayed Mach-Zehnder interferometers. , 2007, Optics express.
[69] B. Saadany,et al. Fully Integrated Mach-Zhender MEMS Interferometer With Two Complementary Outputs , 2012, IEEE Journal of Quantum Electronics.
[70] Shao-Lun Huang,et al. A Spectral Reconstruction Algorithm of Miniature Spectrometer Based on Sparse Optimization and Dictionary Learning , 2018, Sensors.
[71] P Waldron,et al. A high-resolution silicon-on-insulator arrayed waveguide grating microspectrometer with sub-micrometer aperture waveguides. , 2007, Optics express.
[72] Alain Morand,et al. All Integrated Lithium Niobate Standing Wave Fourier Transform Electro-Optic Spectrometer , 2018, Journal of Lightwave Technology.
[73] C. Dragone,et al. Demonstration of a 15*15 arrayed waveguide multiplexer on InP , 1992, IEEE Photonics Technology Letters.
[74] Junying Li,et al. On-chip infrared spectroscopic sensing: Redefining the benefits of scaling , 2017, 2016 Progress in Electromagnetic Research Symposium (PIERS).
[75] Benjamin Gallinet,et al. Multispectral Imaging with Tunable Plasmonic Filters , 2017 .
[76] J. B. Bates,et al. Fourier transform spectroscopy , 1978 .
[77] H. L. Kung,et al. Silicon-based micro-Fourier spectrometer , 2005, IEEE Transactions on Electron Devices.
[78] Brian A Wandell,et al. Integrated color pixels in 0.18-microm complementary metal oxide semiconductor technology. , 2003, Journal of the Optical Society of America. A, Optics, image science, and vision.
[79] Huigao Duan,et al. Printing colour at the optical diffraction limit. , 2012, Nature nanotechnology.
[80] T. Ebbesen,et al. Plasmonic photon sorters for spectral and polarimetric imaging , 2008 .