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23篇 您的检索式:作者名="David Neely"
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1Petawatt and exawatt class lasers worldwide显示文摘In the 2015 review paper‘Petawatt Class Lasers Worldwide’a comprehensive overview of the current status of highpower facilities of>200 TW was presented.This was largely based on facility specifications,with some description of their uses,for instance in fundamental ultra-high-intensity interactions,secondary source generation,and inertial confinement fusion(ICF).With the 2018 Nobel Prize in Physics being awarded to Professors Donna Strickland and Gerard Mourou for the development of the technique of chirped pulse amplification(CPA),which made these lasers possible,we celebrate by providing a comprehensive update of the current status of ultra-high-power lasers and demonstrate how the technology has developed.We are now in the era of multi-petawatt facilities coming online,with 100 PW lasers being proposed and even under construction.In addition to this there is a pull towards development of industrial and multi-disciplinary applications,which demands much higher repetition rates,delivering high-average powers with higher efficiencies and the use of alternative wavelengths:mid-IR facilities.So apart from a comprehensive update of the current global status,we want to look at what technologies are to be deployed to get to these new regimes,and some of the critical issues facing their development.Colin N.Danson Constantin Haefner Jake Bromage Thomas Butcher Jean-Christophe FChanteloup Enam A.Chowdhury Almantas Galvanauskas Leonida A.Gizzi Joachim Hein David I.Hillier Nicholas W.Hopps Yoshiaki Kato Efim A.Khazanov Ryosuke Kodama Georg Korn Ruxin Li Yutong Li Jens Limpert Jingui Ma Chang Hee Nam David Neely Dimitrios Papadopoulos Rory R.Penman Liejia Qian Jorge J.Rocca andrey A.Shaykin Craig W.Siders Christopher Spindloe Sándor Szatmári Raoul M.G.M.Trines Jianqiang Zhu Ping Zhu Jonathan D.Zuegel 2019High Power Laser Science and Engineering2019,7,3:33
2Petawatt class lasers worldwide显示文摘The use of ultra-high intensity laser beams to achieve extreme material states in the laboratory has become almost routine with the development of the petawatt laser. Petawatt class lasers have been constructed for specific research activities,including particle acceleration, inertial confinement fusion and radiation therapy, and for secondary source generation(x-rays, electrons, protons, neutrons and ions). They are also now routinely coupled, and synchronized, to other large scale facilities including megajoule scale lasers, ion and electron accelerators, x-ray sources and z-pinches. The authors of this paper have tried to compile a comprehensive overview of the current status of petawatt class lasers worldwide.The definition of ‘petawatt class' in this context is a laser that delivers >200 TW.Colin Danson David Hillier Nicholas Hopps David Neely 2015High Power Laser Science and Engineering2015,3,1:16
3A history of high-power laser research and development in the United Kingdom显示文摘The first demonstration of laser action in ruby was made in 1960 by T.H.Maiman of Hughes Research Laboratories,USA.Many laboratories worldwide began the search for lasers using different materials,operating at different wavelengths.In the UK,academia,industry and the central laboratories took up the challenge from the earliest days to develop these systems for a broad range of applications.This historical review looks at the contribution the UK has made to the advancement of the technology,the development of systems and components and their exploitation over the last 60 years.Colin N.Danson Malcolm White John R.M.Barr Thomas Bett Peter Blyth David Bowley Ceri Brenner Robert J.Collins Neal Croxford A.E.Bucker Dangor Laurence Devereux Peter E.Dyer Anthony Dymoke-Bradshaw Christopher B.Edwards Paul Ewart Allister I.Ferguson John M.Girkin Denis R.Hall David C.Hanna Wayne Harris David I.Hillier Christopher J.Hooker Simon M.Hooker Nicholas Hopps Janet Hull David Hunt Dino A.Jaroszynski Mark Kempenaars Helmut Kessler Sir Peter L.Knight Steve Knight Adrian Knowles Ciaran L.S.Lewis Ken S.Lipton Abby Littlechild John Littlechild Peter Maggs Graeme P.A.Malcolm OBE Stuart P.D.Mangles William Martin Paul McKenna Richard O.Moore Clive Morrison Zulfikar Najmudin David Neely Geoff H.C.New Michael J.Norman Ted Paine Anthony W.Parker Rory R.Penman Geoff J.Pert Chris Pietraszewski Andrew Randewich Nadeem H.Rizvi Nigel Seddon MBE Zheng-Ming Sheng David Slater Roland A.Smith Christopher Spindloe Roy Taylor Gary Thomas John W.G.Tisch Justin S.Wark Colin Webb S.Mark Wiggins Dave Willford Trevor Winstone 2021High Power Laser Science and Engineering2021,9,2:5
4Laser produced electromagnetic pulses: generation, detection and mitigation显示文摘This paper provides an up-to-date review of the problems related to the generation,detection and mitigation of strong electromagnetic pulses created in the interaction of high-power,high-energy laser pulses with different types of solid targets.It includes new experimental data obtained independently at several international laboratories.The mechanisms of electromagnetic field generation are analyzed and considered as a function of the intensity and the spectral range of emissions they produce.The major emphasis is put on the GHz frequency domain,which is the most damaging for electronics and may have important applications.The physics of electromagnetic emissions in other spectral domains,in particular THz and MHz,is also discussed.The theoretical models and numerical simulations are compared with the results of experimental measurements,with special attention to the methodology of measurements and complementary diagnostics.Understanding the underlying physical processes is the basis for developing techniques to mitigate the electromagnetic threat and to harness electromagnetic emissions,which may have promising applications.Fabrizio Consoli Vladimir TTikhonchuk Matthieu Bardon Philip Bradford David CCarroll Jakub Cikhardt Mattia Cipriani Robert JClarke Thomas ECowan Colin NDanson Riccardo De Angelis Massimo De Marco Jean-Luc Dubois Bertr Etchessahar Alejro Laso Garcia David IHillier Ales Honsa Weiman Jiang Viliam Kmetik Josef Krása Yutong Li FredériéLubrano Paul McKenna Josefine Metzkes-Ng Alexre Poyé Irene Prencipe Piotr Ra¸czka Rol ASmith Roman Vrana Nigel CWoolsey Egle Zemaityte Yihang Zhang Zhe Zhang Bernhard Zielbauer David Neely 2020High Power Laser Science and Engineering2020,8,2:3
5Omega‐3 fatty acids and/or fluvastatin in hepatitis C prior non‐responders to combination antiviral therapy – a pilot randomised clinical trial显示文摘David A. Sheridan Simon H. Bridge Mary M. E. Crossey Daniel J. Felmlee Fiona I. Fenwick Howard C. Thomas R. Dermot G. Neely Simon D. Taylor‐Robinson Margaret F. Bassendine 2014Liver Int2014,,5:2
6Hepatitis C virus and lipids in the era of direct acting antivirals (DAAs)显示文摘David A. Sheridan R. Dermot G. Neely Margaret F. Bassendine 2012Clinics and Research in Hepatology and Gastroenterology2012,,:2
7HCV and the hepatic lipid pathway as a potential treatment target显示文摘Margaret F. Bassendine David A. Sheridan Daniel J. Felmlee Simon H. Bridge Geoffrey L Toms R. Dermot G. Neely 2011Journal of Hepatology2011,,6:2
8Soluble ST2 in Ambulatory Patients With Heart Failure: Association With Functional Capacity and Long-Term Outcomes显示文摘G. Michael Felker Mona Fiuzat Vivian Thompson Linda K. Shaw Megan L. Neely Kirkwood F. Adams David J. Whellan Mark P. Donahue Tariq Ahmad Dalane W. Kitzman Ileana L. Pi?a Faiez Zannad William E. Kraus Christopher M. O’Connor 2013Circulation: Heart Failure2013,,6:1
9Apolipoprotein-E and hepatitis C lipoviral particles in genotype 1 infection: Evidence for an association with interferon sensitivity显示文摘David A. Sheridan Simon H. Bridge Daniel J. Felmlee Mary M.E. Crossey Howard C. Thomas Simon D. Taylor-Robinson Geoffrey L. Toms R. Dermot G. Neely Margaret F. Bassendine 2012Journal of Hepatology2012,,1:1
10Developing a multimedia model of chemical dynamics in an urban area 显示文摘MIRIAM L D DAVID A P NEELY L L 2001Chemosphere2001,44,7:1
11DIABETIC RETINOPATHY显示文摘Kimberly A. Neely David A. Quillen Andrew P. Schachat Thomas W. Gardner George W. Blankenship 1998Medical Clinics of North America1998,,4:1
12Developing a multimedia model of chemical dynamics in urban area显示文摘Mairiam L Diamond David A Piemer Neely L Law 2001Chemosphere2001,44,:1
13Strabismus in Pediatric Pseudophakia显示文摘Oren L. Weisberg Derek T. Sprunger David A. Plager Daniel E. Neely Naval Sondhi 2005Ophthalmology2005,,9:1
14Networking and innovation:a systematic review of the evidence显示文摘Luke Pittaway Maxine Robertson Kamal Munir David Denyer and Andy Neely 2004International Journal of Management Reviews2004,56,34:1
15Apolipoprotein-E and hepatitis C lipoviral particles in genotype 1 infection: Evidence for an association with interferon sensitivity显示文摘David A. Sheridan Simon H. Bridge Daniel J. Felmlee Mary M.E. Crossey Howard C. Thomas Simon D. Taylor-Robinson Geoffrey L. Toms R. Dermot G. Neely Margaret F. Bassendine 2012Journal of Hepatology2012,,1:1
16Pulse fidelity in ultra-high-power(petawatt class)laser systems显示文摘There are several petawatt-scale laser facilities around the world and the fidelity of the pulses to target is critical in achieving the highest focused intensities and the highest possible contrast. The United Kingdom has three such laser facilities which are currently open for access to the academic community: Orion at AWE, Aldermaston and Vulcan & Astra-Gemini at the Central Laser Facility(CLF), STFC(Science and Technology Facilities Council)Rutherford Appleton Laboratory(RAL). These facilities represent the two main classes of petawatt facilities: the mixed OPCPA/Nd:glass high-energy systems of Orion and Vulcan and the ultra-short-pulse Ti:Sapphire system of AstraGemini. Many of the techniques used to enhance and control the pulse generation and delivery to target have been pioneered on these facilities. In this paper, we present the system designs which make this possible and discuss the contrast enhancement schemes that have been implemented.Colin Danson David Neely David Hillier 2014High Power Laser Science and Engineering2014,2,4:1
17Alignment of solid targets under extreme tight focus conditions generated by an ellipsoidal plasma mirror显示文摘The design of ellipsoidal plasma mirrors(EPMs)for the PEARL laser facility is presented.The EPMs achieve a magnification of 0.32 in focal spot size,and the corresponding increase in focused intensity is expected to be about 8.Designing and implementing such focusing optics for short-pulse(<100 fs)systems paves the way for their use in future high-power facilities,where they can be used to achieve intensities beyond 1023W/cm^(2).A retro-imaging-based target alignment system is also described,which is used to align solid targets at the output of the ellispoidal mirrors(with a numerical aperture of 0.75 in this case).Deepak Kumar Michal Smid Sushil Singh Alexander Soloviev Hannes Bohlin Konstantin Burdonov Gashaw Fente Alexander Kotov Livia Lancia Vit Leedl Sergey Makarov Michael Morrissey Sergey Perevalov Denis Romanovsky Sergey Pikuz Ryousuke Kodama David Neely Paul McKenna Tomas Lastovicka Mikhail Starodubtsev Stefan Weber Motoaki Nakatsutsumi Julien Fuchs 2019Matter and Radiation at Extremes2019,4,2:1
18Intravascular Transfer Contributes to Postprandial Increase in Numbers of Very-Low-Density Hepatitis C Virus Particles显示文摘Daniel J. Felmlee David A. Sheridan Simon H. Bridge S?ren U. Nielsen Ross W. Milne Chris J. Packard Muriel J. Caslake John McLauchlan Geoffrey L. Toms R. Dermot G. Neely Margaret F. Bassendine 2010Gastroenterology2010,,5:1
19A Randomized Clinical Trial of 4-Hydroxyphenylretinamide for High-Grade Squamous Intraepithelial Lesions of the Cervix显示文摘Michele F Neely A David S 2001Clinical Cancer Research2001,7,11:1
20PCSK9, apolipoprotein E and lipoviral particles in chronic hepatitis C genotype 3: evidence for genotype-specific regulation of lipoprotein metabolism显示文摘Simon H. Bridge David A. Sheridan Daniel J. Felmlee Mary M.E. Crossey Fiona I. Fenwick Clare V. Lanyon Geneviève Dubuc Nabil G. Seidah Jean Davignon Howard C. Thomas Simon D. Taylor-Robinson Geoffrey L. Toms R. Dermot G. Neely Margaret F. Bassendine 2014Journal of Hepatology2014,,:1
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