Lcsim software: status and future plans ECFA-LC DESY May 28, 2013 Norman Graf (for the sim/reco group)

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Presentation transcript:

lcsim software: status and future plans ECFA-LC DESY May 28, 2013 Norman Graf (for the sim/reco group)

The DBD, Snowmass and beyond ILC DBD has been the primary focus of our group –A lot of work done by a small number of dedicated individuals who deserve a lot of credit. –Robust set of end-to-end simulation tools –Grid submission, cataloging via ILCDirac Have also been supporting the needs of HPS –real data requirements mostly orthogonal to MC challenge, but will be useful for upcoming Ecal TB Currently engaged in “Snowmass” 2013 efforts Continued common software development 2

DBD Deliverables Full simulation of realistic detector design including support structures. Overlay of correct admixture of expected beam-related backgrounds. Full tracker hit digitization and ab initio track finding and fitting. Use of common tools –Full PFA reconstruction using slicPandora –Vertexing and flavor-tagging with LCFIPlus 3

The Grid SiD is making full use of Grid via ILCDirac. LCG and OSG ILC VOs merged Identifying OSG resources and making good use of them has been a challenge. –very idiosyncratic –large, steep and site-dependent learning curve But when it works it works very well. 4

Snowmass The APS DPF will host a meeting in Minneapolis this summer. The ALCPG sim/reco group is providing support for physics and detector studies to be conducted leading up to and during the ~one week workshop. To facilitate studies by new groups and individuals we have tried to make things as easy as possible to generate or access detector designs and MC events. Using the DBD experience as a guide.

Snowmass Providing fully simulated and reconstructed events at both 250GeV and 350GeV cms using the sidloi3 detector model (same as DBD), with tracking and PFA done. Awaiting flavor- tagging. Can’t expect everyone to have Grid credentials or belong to the correct VO. Providing access to DBD and related event samples via ftp from SLAC nfs disks. ftp://ftp-lcd.slac.stanford.edu/ilc4/snowmass/ILC250/ Events at 350 expected soon. See Tim Barklow’s talk this afternoon for details of the higgs analyses.

and beyond… Techniques developed for ILC and CLiC are also being used for Muon Collider studies. Some additions to slic and GeomConverter specific to MuC –Geometry: e.g. tapered endcap calorimeters –Support for optical photons: dual-readout calorimetry –“Black hole” insensitive detector: kill particles when entering uninteresting regions e.g. conical tungsten masks. –timing cuts to kill particles after time window (in progress) Background overlay and timing cut functionality developed and tested at CLiC directly applicable. Supporting MuC studies leading up to and at the Snowmass 2013 meeting. 7

Detector Optimization Starting to define a new series of detector models for SiD to explore areas of optimization –better performance e.g. analog Hcal, Silicon Pixel Tracker, different aspect ratio –lower cost e.g. reduce amount of silicon in Ecal –better engineering e.g. layout of barrel staves and endcap doors for calorimetery Need to revisit occupancy and timing studies –e.g. anti-DiD to reduce backgrounds 8

slic SimDist build and distribution system replaced with ILCSoft as part of moving towards more commonality in the software. Work ongoing to allow termination of particles which are out of time or outside region of interest. Handling of secondaries in simulation being revisited. Looking into implementing “parallel” geometries as way of handling complex detectors. Working on improved, more realistic Sensitive Detector definitions. Updates to keep current with latest Geant4 release. 9

org.lcsim ftf and trf packages released ftf being investigated as replacement for / addition to SeedTracker for pattern recognition. trf being adapted to GeomConverter geometry –propagation, MCS and energy loss trf being adapted to the LCIO track and hit models –Full Kalman fit Support for “tilted” planes being introduced 10

Other users HPS experiment at Jlab has adopted the lcsim software for its simulation and reconstruction. Ecal Testbeam scheduled for this summer Real data places different requirements on both the simulation and reconstruction software. –Conditions database improved –Full 3D field map implemented, being optimized –Runge-Kutta stepper implemented –Alignment code being implemented –Ecal hexagonal pixels being implemented 11

Summary Large amount of work done to complete the DBD. Next milestone is Snowmass Used by HPS during test run an for proposal Focus has been on using the existing software, few resources left over for improvements. Looking forward to working towards achieving the goals set forth at the CERN common software meeting earlier this year. 12