PIMAZZONI, ANTONIO
 Distribuzione geografica
Continente #
NA - Nord America 3.126
EU - Europa 644
AS - Asia 221
Totale 3.991
Nazione #
US - Stati Uniti d'America 3.123
IT - Italia 368
CN - Cina 186
DE - Germania 73
FI - Finlandia 71
SE - Svezia 33
GB - Regno Unito 28
IN - India 21
FR - Francia 16
RU - Federazione Russa 12
NL - Olanda 8
LU - Lussemburgo 7
IE - Irlanda 6
HK - Hong Kong 5
ES - Italia 4
UA - Ucraina 4
CA - Canada 3
JP - Giappone 3
BE - Belgio 2
CH - Svizzera 2
GR - Grecia 2
IR - Iran 2
PL - Polonia 2
PT - Portogallo 2
SI - Slovenia 2
AF - Afghanistan, Repubblica islamica di 1
BD - Bangladesh 1
MC - Monaco 1
NO - Norvegia 1
SG - Singapore 1
UZ - Uzbekistan 1
Totale 3.991
Città #
Fairfield 575
Chandler 338
Ashburn 295
Woodbridge 284
Houston 238
Seattle 230
Cambridge 224
Wilmington 184
Ann Arbor 173
Padova 150
Beijing 83
San Diego 44
New York 42
Medford 41
Princeton 41
Lappeenranta 35
Des Moines 34
Helsinki 30
Boardman 26
Nanjing 21
Roxbury 21
Milan 14
London 8
Shenyang 8
Amsterdam 7
Kilburn 7
Meduno 7
Pune 7
Treia 7
Verona 7
Washington 7
Cagliari 6
Ogden 6
Brendola 5
Guangzhou 5
Marostica 5
Noyal-Chatillon-sur-Seiche 5
Venezia 5
Dublin 4
Genoa 4
Grafing 4
Hong Kong 4
Jinan 4
Los Angeles 4
Madrid 4
Nanchang 4
Norwalk 4
Paris 4
Arezzo 3
Garching 3
Guardiagrele 3
Hebei 3
Kharkiv 3
Phoenix 3
Redwood City 3
Selvazzano Dentro 3
Venice 3
Zhengzhou 3
Baotou 2
Borås 2
Castelcovati 2
Delhi 2
Fuzhou 2
Gandhinagar 2
Haikou 2
Hefei 2
Hounslow 2
Jiaxing 2
Krasnoobsk 2
Las Vegas 2
Limena 2
Mascalucia 2
Menlo Park 2
Mestre 2
Nuoro 2
Orange 2
Palermo 2
Pignone 2
Redmond 2
Rockville 2
Rovigo 2
Tianjin 2
Torreglia 2
Wuhan 2
Ahmedabad 1
Antwerp 1
Brescia 1
Campodarsego 1
Chicago 1
Chongqing 1
Clifton 1
Como 1
Costabissara 1
Dallas 1
Dearborn 1
Dhaka 1
Falkenstein 1
Florence 1
Frankfurt am Main 1
Glasgow 1
Totale 3.363
Nome #
Progress in the ITER neutral beam test facility 198
SPIDER in the roadmap of the ITER neutral beams 172
A substantial step forward in the realization of the ITER HNB system: The ITER NBI Test Facility 169
Complete compensation of criss-cross deflection in a negative ion accelerator by magnetic technique 157
Start of SPIDER operation towards ITER neutral beams 147
Negative ion beam source as a complex system: identification of main processes and key interdependence 145
The PRIMA Test Facility: SPIDER and MITICA test-beds for ITER neutral beam injectors 135
Improving a negative ion accelerator for next generation of neutral beam injectors: Results of QST-Consorzio RFX collaborative experiments 126
First operation in SPIDER and the path to complete MITICA 118
Progress on development of SPIDER diagnostics 117
Extraction of many H - beamlets from ion source NIO1 117
Neutralisation and transport of negative ion beams: physics and diagnostics 114
Improvements of the versatile multiaperture negative ion source NIO1 109
Beam and installation improvements of the NIO1 ion source 108
The ITER Neutral Beam Test Facility toward SPIDER operation 106
Experimental experience and improvement of NIO1 H− ion source 106
The NIO1 negative ion source: Investigation and operation experience 105
Ion beam transport: modelling and experimental measurements on a large negative ion source in view of the ITER heating neutral beam 97
Determination of the meniscus shape of a negative ion beam from an experimentally obtained beam profile 97
A first characterization of the NIO1 particle beam by means of a diagnostic calorimeter 97
Thermal characterization of the SPIDER diagnostic calorimeter 96
The role of thermal effects in plasma medical applications: Biological and calorimetric analysis 96
First measurements of beam plasma in NIFS test stand 86
On the road to ITER NBIs: SPIDER improvement after first operation and MITICA construction progress 86
Status, scientific results and technical improvements of the NBH on TCV tokamak 81
A suite of diagnostics to validate and optimize the prototype ITER neutral beam injector 80
Beam calorimetry at the large negative ion source test facility ELISE: Experimental setup and latest results 79
Improving the transported negative ion beam current in NIO1 78
System for voltage control and for data acquisition of retarding field energy analyzer 76
Simulation and measurement of rarefied gas flow and neutral density profiles through a large multiaperture multigrid negative ion accelerator 76
Analysis of diagnostic calorimeter data by the transfer function technique 68
Investigation of the parameters of a particle beam by numerical models and diagnostic calorimetry 67
Test of ID carbon-carbon composite prototype tiles for the SPIDER diagnostic calorimeter 64
SPIDER, the Negative Ion Source Prototype for ITER: Overview of Operations and Cesium Injection 62
Development of a set of movable electrostatic probes to characterize the plasma in the ITER neutral beam negative-ion source prototype 60
First operations with caesium of the negative ion source SPIDER 58
Latest experimental and theoretical advances in the production of negative ions in caesium-free plasmas 57
Applicability of inverse heat flux evaluation to thermographic measurements in SPIDER 53
Benchmark of beam acceleration codes on a high voltage negative ion accelerator for fusion with a new hypothesis on the beam meniscus 47
SPIDER plasma grid masking for reducing gas conductance and pressure in the vacuum vessel 36
Lessons learned after three years of SPIDER operation and the first MITICA integrated tests 30
Overview on electrical issues faced during the SPIDER experimental campaigns 24
Co-extracted electrons and beam inhomogeneity in the large negative ion source SPIDER 18
Investigation of Negative Ion Energy Distribution and Extraction Mechanism With a Compact Retarding Field Energy Analyzer in a Large Filament-Arc Source for Neutral Beam Injectors 16
Beamlet scraping and its influence on the beam divergence at the BATMAN Upgrade test facility 16
Spatially resolved diagnostics for optimization of large ion beam sources 13
SPIDER Beam Homogeneity Characterization Through Visible Cameras 12
On the role of dissociative recombination on the effectiveness of a plasma neutralizer in DEMO fusion plant 10
Highlights of recent SPIDER results and improvements 10
Beam homogeneity of caesium seeded SPIDER using a direct beamlet current measurement 8
Influence of plasma grid-masking on the results of early SPIDER operation 8
Influence of positive ions on the beamlet optics for negative-ion neutral beam injectors 8
Plasma emission monitored via optical emission spectroscopy during the Cs conditioning at SPIDER 6
Heat loads on the accelerator grids of the ITER HNB prototype 6
Design and Development of a Diagnostic System for a Non-Intercepting Direct Measure of the SPIDER Ion Source Beamlet Current 6
Towards self-consistent modelling of negative ion beam acceleration 5
A real case of complex network controllability: The NIO1 ion beam source 4
Langmuir Probes as a Tool to Investigate Plasma Uniformity in a Large Negative Ion Source 4
Initial Results From the SPIDER Beamlet Current Diagnostic 4
Measurement of stripping losses in the negative ion source SPIDER 1
Totale 4.155
Categoria #
all - tutte 16.255
article - articoli 11.477
book - libri 0
conference - conferenze 0
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 823
Totale 28.555


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2018/2019211 0 0 0 0 0 0 0 0 0 0 115 96
2019/20201.038 69 53 54 114 98 50 100 132 152 102 92 22
2020/2021735 58 46 65 57 31 25 32 76 102 87 111 45
2021/2022644 14 37 78 22 52 57 24 81 66 13 65 135
2022/2023666 97 78 15 100 76 68 7 40 76 27 61 21
2023/2024519 19 64 78 58 31 95 64 35 20 53 2 0
Totale 4.155