Euroatom FP7

Progress of ADAS-EU

The deliverables of the project will be published as five review papers and reports. All atomic and molecular data produced will form part of ADAS and OPEN-ADAS.

The progress of the five themes is divided into a series of workpackages.

Theme T1: Heavy element spectroscopy and models work package summary
Work Package Code Description Status Details
Heavy element baseline generation 1-1 Enable promotional rule algorithmic, automatic scripted multi-config. baseline computations. Complete science_1
  1-2 Enable config. average sizing and truncation power deficit calculations. Complete science_2
  1-3 Release selected ADAS baseline heavy element data. Ongoing science_3
Managing spectral complexity 2-1 Enable scripted production of massive line sets via 'ic', 'ls' and 'ca' popns. for emissivities and feature emissivities. Complete science_2
  2-2 Utilise automatic sizing to delimit zones of avoidance for high resolution spectroscopy. Complete science_3
  2-3 Experimental exploitation/validation. Partial science_2
Fitting to impurity transport codes 3-1 Implement superstage compression and flexible partitioning for transparent use in application codes. Complete science_3
  3-2 Enable automatic natural and dynamic partition creation. Complete science_3
  3-3 Implement postprocessing capability for spectral prediction
  3-4 Experimental exploitation/validation. Partial science_3
Lifting the baseline 4-1 Enable scripted multi-config., 'ca' code for ionisation and excitation/autoionisation level 1 rate data production
  4-2 Enable BBGP state selective dielectronic level 1 data production using post-processes AUTOSTRUCTURE drivers.
  4-3 Implement global scaling update of parametric baseline forms
Embedding low and high ion fiducials 5-1 Procure/embed level 2 ionisation data for selected ion with shake-off, shake-down, multi-electron loss
  5-2 Procure/embed selected highly charged ion DARC/RMATRIX-II level 2 data.
  5-3 Procure/embed near neutral modelling data from level 2 structure study.
  5-4 Implement global up-scaling of level 1 forms
 
Theme T2: Charge exchange spectroscopy work package summary
Work Package Code Description Status Report
Shared CXS analysis 6-1 Machine independent CXS spectral region spectral fitting (CXSFIT). Complete science_1
  6-2 CXS spectral line interpretative analysis (NEW-CHEAP). Deferred science_3
  6-3 Implement universal (orbit, orientation) corrections. Deferred science_3
  6-4 Experimental exploitation/validation. Partial science_1, science_2
Universal heavy element CXS modelling 7-1 Bundle-n population modelling for theoretical CXS emissivities. Complete science_1
  7-2 Merge projected bundle n and l-shell mixing/cascade models for medium charge state ions. Ongoing science_2
  7-3 Heavy element universal parametric CXS and weak dense CXS line/quasi-continuum modelling Complete science_2
Transport and multiple charge state CXS 8-1 Enable fast beam CXS (nl) modelling for partially stripped ions
  8-2 Link localised simultaneous CXS with transport (UTC/SANCO) for adjacent ions of an element.
  8-3 Bootstrapping approach to spectral emission and transport validation in linked passive and active observations.
  8-4 Experimental exploitation/validation.
CXS data and fiducial embedding 9-1 Improved CTMC model cross-section basis extension to higher charge states.
  9-2 Parametric n- and l-shell cross-section dependence revision.
  9-3 Embed CCMO/CCAO fiducials for z>=16 in universal CXS
 
Theme T3: Beam stopping and beam emission spectroscopy work package summary
Work Package Code Description Status Report
Lithium beam diagnostic 10-1 Embed Vienna iterative Ne determination in ADAS maintenance.
  10-2 Embed lithium database in ADAS maintenance.
  10-3 Experimental exploitation/validation.
Stark manifold and projection merging 11-1 Create bundle-n GCR projection matrices for H-beams with motional Stark ionising fields.
  11-2 Map projection matrices to Stark manifold GCR models.
Beam stopping/ emission consistency 12-1 Study of positive ion source H-beam stopping/emissivity consistency
  12-2 Study of negative ion source H-beam stopping/emissivity consistency.
  12-3 Experimental exploitation/validation.
 
Theme T4: Special features work package summary
Work Package Code Description Status Report
Zeeman features 13-1 Embed Zeeman feature primitives and display for special feature handler. Complete science_3
Soft X-ray He/Li-like features 14-1 Generate selected adf31 He-/Li-like special feature files.
  14-2 Implement adf31 non-equilibrium satellite line feature and display for special feature handler.
H Balmer series/limit features 15-1 Implement adf36 non-equilibrium H series limit for spectral feature handler
  15-2 Implement continuum feature an display for spectral feature handler
Unified special feature handling 16-1 Embed special feature objects in spectral fitting algorithms.
  16-2 Embed special feature objects in pedagogical parametric active display. Complete science_3
  16-3 Experimental exploitation/validation
 
Theme T5: Diatomic spectra and collisional-radiative models work package summary
Work Package Code Description Status Report
H2database 17-1 Create H2/H electron and ion ADAS format database Partial science_2
H2/H c-r models 18-1 Embed H2 vibronic p/q space population model Deferred science_3
  18-2 Embed H2/H linked population and emission model Deferred science_3
  18-3 Establish connection to database coefficient sources Ongoing science_3
H2/H isotopomer spectral features 19-1 Enable model of H2 isotopomer band wavelengths and intensities. Deferred science_3
 
Theme M: Scientific management, training and dissemination work package summary
Work Package Code Description Status Report
ADAS-EU atomic modelling course 20-1 Prepare lectures and tutorial materials Ongoing dissem_1
  20-2 Deliver annual ADAS-EU course Ongoing dissem_1
ADAS-EU external support visits 21-1 Address local atomic data and modelling for fusion needs
  21-2 Prepare summary report on local activity and make recommendations
ADAS-EU central training 22-1 Induction training with managers for PDRAs at Culham/JET Complete setup_1, setup_2, dissem_1
  22-2 Annual update training with managers for PDRAs at Culham/JET Ongoing setup_2, dissem_1, science_3
ADAS-EU on-site orientation 23-1 Placement site visits for project set-up and orientation to local fusion needs Complete setup_1, setup_2
  23-2 Annual placement site visit for feedback and project re-orientation. Ongoing setup_2, science_3
Task vetting & progress checks 24-1 Quality assess task completion material in 3 month period
  24-2 Embed data, codes and descriptors in ADAS computer archives.
Staffing and sub-contract establishment 25-1 Prepare PDRA post descriptors and implement selection process. Complete setup_1
  25-2 Negotiate sub-contract specifications and deliverables. Implement sub-contracts. Ongoing setup_1, setup_2
ADAS-EU primary report assembly 26-1 Prepare and deliver six-monthly work period SCIENCE reports. Ongoing science_1, science_2, science_3
  26-2 Prepare and deliver annual OPEN-ADAS release documents. Ongoing open_1
  26-3 Prepare and deliver SETUP reports. Ongoing setup_1, setup_2
  26-4 Prepare and deliver DISSEM reports ongoing dissem_1
  26-5 Prepare and deliver main REVIEW documents and materials Ongoing review_1
  26-6 Prepare completion technical manuals, PUBL and review articles. At project end
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