Maddaluno, G.
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2

Cross machine investigation of magnetic tokamak dust; struc..:

De Angeli, M. ; Tolias, P. ; Conti, C....
Nuclear Materials and Energy.  28 (2021)  - p. 101045 , 2021
 
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Cross machine investigation of magnetic tokamak dust: Morph..:

De Angeli, M. ; Ripamonti, D. ; Ghezzi, F....
Fusion Engineering and Design.  166 (2021)  - p. 112315 , 2021
 
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4

Detection by LIBS of the deuterium retained in the FTU toro..:

Maddaluno, G. ; Almaviva, S. ; Caneve, L....
Nuclear Materials and Energy.  18 (2019)  - p. 208-211 , 2019
 
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5

In situ and remote laser diagnostics for material character..:

Fantoni, R. ; Almaviva, S. ; Caneve, L....
Journal of Instrumentation.  14 (2019)  7 - p. C07004-C07004 , 2019
 
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6

Runaway electron imaging spectrometry (REIS) system:

Causa, F. ; Gospodarczyk, M. ; Buratti, P....
Review of Scientific Instruments.  90 (2019)  7 - p. , 2019
 
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8

Deuterium retention and erosion in liquid Sn samples expose..:

Cremona, A. ; Vassallo, E. ; Alves, E....
Nuclear Materials and Energy.  17 (2018)  - p. 253-258 , 2018
 
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9

LIBS experiments for quantitative detection of retained fue:

Colao, F. ; Almaviva, S. ; Caneve, L....
Nuclear Materials and Energy.  12 (2017)  - p. 133-138 , 2017
 
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11

The DTT device: Safety, fuelling and auxiliary system:

Mazzitelli, G. ; Apicella, M.L. ; Ciattaglia, S....
Fusion Engineering and Design.  122 (2017)  - p. 375-381 , 2017
 
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13

The DTT device: Rationale for the choice of the parameters:

Crisanti, F. ; Albanese, R. ; Ambrosino, R....
Fusion Engineering and Design.  122 (2017)  - p. 288-298 , 2017
 
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14

D-shaped configurations in FTU for testing liquid lithium l..:

Ramogida, G. ; Calabrò, G. ; Crisanti, F....
Nuclear Materials and Energy.  12 (2017)  - p. 1082-1087 , 2017
 
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