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| 1 | Single‐pixel terahertz imaging:a review显示文摘This paper is devoted to reviewing the results achieved so far in the application of the single-pixel imaging technique to terahertz(THz)systems.The use of THz radiation for imaging purposes has been largely explored in the last twenty years,due to the unique capabilities of this kind of radiation in interrogating material properties.However,THz imaging systems are still limited by the long acquisition time required to reconstruct the object image and significant efforts have been recently directed to overcome this drawback.One of the most promising approaches in this sense is the so-called“single-pixel”imaging,which in general enables image reconstruction by patterning the beam probing the object and measuring the total transmission(or reflection)with a single-pixel detector(i.e.,with no spatial resolution).The main advantages of such technique are that i)no bulky moving parts are required to raster-scan the object and ii)compressed sensing(CS)algorithms,which allow an appropriate reconstruction of the image with an incomplete set of measurements,can be successfully implemented.Overall,this can result in a reduction of the acquisition time.In this review,we cover the experimental solutions proposed to implement such imaging technique at THz frequencies,as well as some practical uses for typical THz applications. | Luca Zanotto Riccardo Piccoli Junliang Dong Roberto Morandotti Luca Razzari | 2020 | Opto-Electronic Advances2020,3,9: | 4 |
| 2 | Molecular diversity and thrombotic risk in protein S deficiency:the PROSIT study显示文摘 | Razzari C Lane DA | 2005 | Hum Murat2005,25,3: | 1 |
| 3 | On-chip CMOS-compatible all-optical integrator显示文摘 | Ferrera M Park Y Razzari L Little B E Chu S T Morandotti R Moss D J Aza(n)a J | | 0,,29: | 1 |
| 4 | Reduced photorefraction in hafnium-doped single-domain and periodically poled lithium niobate crystals显示文摘 | KOKANYAN E P RAZZARI L CRISTIANI I | 2004 | Appl Phys Lett2004,84,11: | 1 |
| 5 | Low levels of pro- tein Z and the risk of venous thromboembolism 显示文摘 | MARTINELLI I RAZZARI C BIGUZZI E | 2005 | J Thromb Haem- ost2005,3,12: | 1 |
| 6 | Multifunctional specificity of the protein C/activated protein C Gla domain显示文摘 | Preston RJ Ajzner E Razzari C | 2006 | J Biol Chem2006,281,28: | 1 |
| 7 | Multifunctional specificityof the protein C/activated protein C Gla domain 显示文摘 | Preston RJ Ajzner E Razzari C | 2006 | J BiolChem2006,281,28: | 1 |
| 8 | Polymor- phisms of the protein Z-dependent protease inhibitor (ZPI) gene and the risk of venous thromboembolism 显示文摘 | RAZZARI C MARTINELLI I BUCCIARELLI P | 2006 | Thromb Haemost2006,95,5: | 1 |
| 9 | Ressistance to activated protein C in unselected patients with arterial and venous thrombosis 显示文摘 | Faioni EM Razzari C Martinelli I | 1997 | AmJ Hematol1997,55,2: | 1 |
| 10 | Z-scan measurements using high repetition rate lasers:How to manage thermal effects显示文摘 | Gnoli A Razzari L Righini M | 2005 | Optics Express2005,13,20: | 1 |
| 11 | Reduced Free Protein S Levels in Patients with Inflammatory Bowel Disease显示文摘 | Simone Saibeni Maurizio Vecchi Carla Valsecchi Elena M. Faioni Cristina Razzari Roberto de Franchis | 2001 | Digestive Diseases and Sciences2001,,3: | 1 |
| 12 | Excited-state dynamics and nonlinear optical response of Ge nanocrystals em- bedded in silica matrix显示文摘 | RAZZARI L GNOLI A RIGHINI M | 2006 | Appl Phys Lett2006,88,18: | 1 |
| 13 | Z -scan measurements using high repetition rate lasers: how to manage thermal effects 显示文摘 | ANDREA GNOLI LUCA RAZZARI MAROFABIO RIGHINI | 2005 | Optic Express2005,13,20: | 1 |
| 14 | Type and location of venous thromboembolism in patients with factorⅤ Leiden or prothrombin G20210A and in those with no thrombophilia显示文摘 | Martinelli I Battaglioli T Razzari C | 2007 | J Thromb Haemost2007,5,1: | 1 |
| 15 | On-chip CMOS-compatible all-optical integrator显示文摘 | FERRERA M PARKAZZARI Y RAZZARI L | 2010 | Nature Communications2010,1,3: | 1 |
| 16 | A universal route to efficient non-linear response via Thomson scattering in linear solids显示文摘Non-linear materials are cornerstones of modern optics and electronics.Strong dependence on the intrinsic properties of particular materials,however,inhibits the at-will extension of demanding non-linear effects,especially those second-order ones,to widely adopted centrosymmetric materials(for example,silicon)and te chnologically important burgeoning spectral domains(for example,terahertz frequencies).Here we introduce a universal route to efficient non-linear responses enabled by exciting non-linear Thomson scattering,a fundamental process in electrodynamics that was known to occur only in relativistic electrons in metamaterial composed of linear materials.Such a mechanism modulates the trajectory of charges,either intrinsically or extrinsically provided in solids,at twice the driving frequency,allowing second-harmonic generation at terahertz frequencies on crystalline silicon with extremely large non-linear susceptibility in our proof-of-concept experiments.By offering a substantially material-and frequency-independent platform,our approach opens new possibilities in the fields of on-demand non-linear optics,terahertz sources,strong field light-solid interactions and integrated photonic circuits. | Yongzheng Wen Flavio Giorgianni Igor Ilyakov Baogang Quan Sergey Kovalev Chen Wang Carlo Vicario Jan-Christoph Deinert Xiaoyu Xiong Joe Bailey Min Chen Alexey Ponomaryov Nilesh Awari Andrea Rovere Jingbo Sun Roberto Morandotti Luca Razzari Gabriel Aeppli Junjie Li Ji Zhou | 2023 | National Science Review2023,10,7: | 0 |