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Massively parallel coherent laser ranging using a soliton microcomb 期刊论文
NATURE, 2020, 581 (7807) : 164-+
作者:  Casanova, Emmanuelle;  Knowles, Timothy D. J.;  Bayliss, Alex;  Dunne, Julie;  Baranski, Marek Z.;  Denaire, Anthony;  Lefranc, Philippe;  di Lernia, Savino;  Roffet-Salque, Melanie;  Smyth, Jessica;  Barclay, Alistair;  Gillard, Toby;  Classen, Erich;  Coles, Bryony;  Ilett, Michael;  Jeunesse, Christian;  Krueger, Marta;  Marciniak, Arkadiusz;  Minnitt, Steve;  Rotunno, Rocco;  van de Velde, Pieter;  van Wijk, Ivo;  Cotton, Jonathan;  Daykin, Andy;  Evershed, Richard P.
收藏  |  浏览/下载:46/0  |  提交时间:2020/07/03

Coherent ranging, also known as frequency-modulated continuous-wave (FMCW) laser-based light detection and ranging (lidar)(1) is used for long-range three-dimensional distance and velocimetry in autonomous driving(2,3). FMCW lidar maps distance to frequency(4,5) using frequency-chirped waveforms and simultaneously measures the Doppler shift of the reflected laser light, similar to sonar or radar(6,7) and coherent detection prevents interference from sunlight and other lidar systems. However, coherent ranging has a lower acquisition speed and requires precisely chirped(8) and highly coherent(5) laser sources, hindering widespread use of the lidar system and impeding parallelization, compared to modern time-of-flight ranging systems that use arrays of individual lasers. Here we demonstrate a massively parallel coherent lidar scheme using an ultra-low-loss photonic chip-based soliton microcomb(9). By fast chirping of the pump laser in the soliton existence range(10) of a microcomb with amplitudes of up to several gigahertz and a sweep rate of up to ten megahertz, a rapid frequency change occurs in the underlying carrier waveform of the soliton pulse stream, but the pulse-to-pulse repetition rate of the soliton pulse stream is retained. As a result, the chirp from a single narrow-linewidth pump laser is transferred to all spectral comb teeth of the soliton at once, thus enabling parallelism in the FMCW lidar. Using this approach we generate 30 distinct channels, demonstrating both parallel distance and velocity measurements at an equivalent rate of three megapixels per second, with the potential to improve sampling rates beyond 150 megapixels per second and to increase the image refresh rate of the FMCW lidar by up to two orders of magnitude without deterioration of eye safety. This approach, when combined with photonic phase arrays(11) based on nanophotonic gratings(12), provides a technological basis for compact, massively parallel and ultrahigh-frame-rate coherent lidar systems.


  
Observation of topologically enabled unidirectional guided resonances 期刊论文
NATURE, 2020, 580 (7804) : 467-+
作者:  Wang, Renjing;  Wang, Shengliu;  Dhar, Ankita;  Peralta, Christopher;  Pavletich, Nikola P.
收藏  |  浏览/下载:6/0  |  提交时间:2020/07/03

Unidirectional radiation is important for various optoelectronic applications, such as lasers, grating couplers and optical antennas. However, almost all existing unidirectional emitters rely on the use of materials or structures that forbid outgoing waves-that is, mirrors, which are often bulky, lossy and difficult to fabricate. Here we theoretically propose and experimentally demonstrate a class of resonances in photonic crystal slabs that radiate only towards one side of the slab, with no mirror placed on the other side. These resonances, which we name '  unidirectional guided resonances'  , are found to be topological in nature: they emerge when a pair of half-integer topological charges(1-3) in the polarization field bounce into each other in momentum space. We experimentally demonstrate unidirectional guided resonances in the telecommunication regime by achieving single-side radiative quality factors as high as 1.6 x 10(5). We further demonstrate their topological nature through far-field polarimetry measurements. Our work represents a characteristic example of applying topological principles(4,5) to control optical fields and could lead to energy-efficient grating couplers and antennas for light detection and ranging.


Unidirectional radiation is achieved in a photonic crystal slab without the use of mirrors by merging a pair of topological defects carrying half-integer charges.


  
Usability of citizen science observations together with airborne laser scanning data in determining the habitat preferences of forest birds 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2018, 430: 498-508
作者:  Mononen, L.;  Auvinen, A. -P.;  Packalen, P.;  Virkkala, R.;  Valbuena, R.;  Bohlin, I.;  Valkama, J.;  Vihervaara, P.
收藏  |  浏览/下载:5/0  |  提交时间:2019/04/09
Citizen Science (CS)  Airborne laser scanning (ALS)  Light detection and ranging (LiDAR)  Forest bird habitats  Habitat modelling  
Modeling plant invasion on Mediterranean coastal landscapes: An integrative approach using remotely sensed data 期刊论文
LANDSCAPE AND URBAN PLANNING, 2018, 171: 98-106
作者:  Bazzichetto, Manuele;  Malavasi, Marco;  Bartak, Vojtech;  Acosta, Alicia Teresa Rosario;  Moudry, Vitezslav;  Carranza, Maria Laura
收藏  |  浏览/下载:4/0  |  提交时间:2019/04/09
Carpobrotus sp.  Generalized additive model  Invasion species distribution model  Light detection and ranging  COME land cover map  
Threshold loss of discontinuous permafrost and landscape evolution 期刊论文
GLOBAL CHANGE BIOLOGY, 2017, 23 (7)
作者:  Chasmer, Laura;  Hopkinson, Chris
收藏  |  浏览/下载:4/0  |  提交时间:2019/04/09
boreal  climate change  ENSO  hydrology  light detection and ranging  permafrost  remote sensing  tipping point  
Detailed Hydrographic Feature Extraction from High-Resolution LiDAR Data 科技报告
来源:US Department of Energy (DOE). 出版年: 2012
作者:  Danny L. Anderson
收藏  |  浏览/下载:4/0  |  提交时间:2019/04/05
Feature Extraction  Hydrology  LiDAR  Light Detection and Ranging  Stream Channel Delineation