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INPUTS_CTA_PROD5-Paranal-baseline-template-20deg
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* CORSIKA inputs file template for CTA prod-4 simulations at 20 deg zenith angle.
* Includes alternatives for different primaries (selected by pre-processor),
* for PRMPAR, ERANGE, VIEWCONE, CSCAT parameters.
* Includes site definitions for Paranal (CTA-South) site only,
* for OBSLEV, ATMOSPHERE, and MAGNET parameters.
* Showers can come from North (default), South, East, or West.
* Number of showers to be simulated needs to be adapted to run duration for each primary type.
* SEEDs need to be re-generated for each simulation run separately!!!
*
* =============== Corsika INPUTS =======================
*
* [ Job parameters ]
*
RUNNR 1 // Number of run, to be auto-numbered by job submission
EVTNR 1 // Number of first shower event (usually 1)
* NSHOW 10 // for test only
* CSCAT 1 400e2 0. // for test only
* ERANGE 0.3E3 3E3 // for test only
ESLOPE -2.0 // Slope of primary energy spectrum (-2.0 is equal CPU time per decade)
*
* [ Random number generator: 4 sequences used in IACT mode ]
*
SEED 385928125 401 0 // Seed for 1st random number sequence, to be re-generated
SEED 827619802 859 0 // Seed for 2nd random number sequence, to be re-generated
SEED 195989238 390 0 // Seed for 3rd random number sequence, to be re-generated
SEED 539053819 323 0 // Seed for 4th random number sequence, to be re-generated
*
* [ Primary particle options ]
*
#ifdef PRIMARY_GAMMA
PRMPAR 1 // Particle type of prim. particle (1: gamma; 3: elec, 14: proton, 402: helium)
ERANGE 3.0 330E3 // Energy range of primary particle (in GeV): gammas & electrons
NSHOW 10000 // number of showers to generate
IACT setenv PRMNAME gamma // If you want to use the name of the primary in a generated filename.
#endif
#ifdef PRIMARY_GAMMA_DIFFUSE
PRMPAR 1 // Particle type of prim. particle (1: gamma; 3: elec, 14: proton, 402: helium)
ERANGE 3.0 330E3 // Energy range of primary particle (in GeV): gammas & electrons
NSHOW 10000 // number of showers to generate
IACT setenv PRMNAME gamma-diffuse
#define DIFFUSE 1
#endif
#ifdef PRIMARY_ELECTRON
PRMPAR 3 // Particle type of prim. particle (3: electron)
ERANGE 3.0 330E3 // Energy range of primary particle (in GeV): gammas & electrons
NSHOW 10000 // number of showers to generate
IACT setenv PRMNAME electron
#define DIFFUSE 1
#endif
#ifdef PRIMARY_PROTON
PRMPAR 14 // Particle type of prim. particle (14: proton)
ERANGE 4.0 600E3 // Energy range of primary particle (in GeV): protons
NSHOW 25000 // number of showers to generate
IACT setenv PRMNAME proton
#define DIFFUSE 1
#endif
#ifdef PRIMARY_HELIUM
PRMPAR 402 // Particle type of prim. particle (402: helium)
ERANGE 0.01E3 1200E3 // Energy range of primary particle (in GeV): helium
NSHOW 15000 // number of showers to generate
IACT setenv PRMNAME helium
#define DIFFUSE 1
#endif
#ifdef PRIMARY_NITROGEN
PRMPAR 1407 // Particle type of prim. particle (1407: nitrogen)
ERANGE 0.04E3 4000E3 // Energy range of primary particle (in GeV): nitrogen
NSHOW 3000 // number of showers to generate
IACT setenv PRMNAME nitrogen
#define DIFFUSE 1
#endif
#ifdef PRIMARY_SILICON
PRMPAR 2814 // Particle type of prim. particle (2814: silicon)
ERANGE 0.05E3 5000E3 // Energy range of primary particle (in GeV): silicon
NSHOW 2500 // number of showers to generate
IACT setenv PRMNAME silicon
#define DIFFUSE 1
#endif
#ifdef PRIMARY_IRON
PRMPAR 5626 // Particle type of prim. particle (5626: iron)
ERANGE 0.06E3 6000E3 // Energy range of primary particle (in GeV): iron
NSHOW 2000 // number of showers to generate
IACT setenv PRMNAME iron
#define DIFFUSE 1
#endif
*
THETAP 20. 20. // Range of zenith angles (degree)
IACT setenv ZA 20
*
#if defined(ALIGN_B_FIELD)
* Geomagnetic field is assumed to be aligned with geographic North (array x axis).
# define AZM_FROM_SOUTH 0.
# define AZM_FROM_EAST 90.
# define AZM_FROM_NORTH 180.
# define AZM_FROM_WEST 270.
#elif defined(YEAR2020)
* Geomagnetic field aligned as predicted for year 2020.0.
# define AZM_FROM_SOUTH -3.433
# define AZM_FROM_EAST 86.567
# define AZM_FROM_NORTH 176.567
# define AZM_FROM_WEST 266.567
#else
* Geomagnetic field aligned as predicted for year 2025.0.
# define AZM_FROM_SOUTH -4.533
# define AZM_FROM_EAST 85.467
# define AZM_FROM_NORTH 175.467
# define AZM_FROM_WEST 265.467
#endif
*
#if defined(FROM_SOUTH)
PHIP $(AZM_FROM_SOUTH) $(AZM_FROM_SOUTH) // CORSIKA azimuth angles (degree) for primaries coming from South.
IACT setenv AZM 180 // Corresponding astronomical azimuth, from geographical North towards East.
#elif defined(FROM_EAST)
PHIP $(AZM_FROM_EAST) $(AZM_FROM_EAST) // CORSIKA azimuth angles (degree) for primaries coming from East.
IACT setenv AZM 90 // Corresponding astronomical azimuth, from geographical North towards East.
#elif defined(FROM_WEST)
PHIP $(AZM_FROM_NORTH) $(AZM_FROM_NORTH) // CORSIKA azimuth angles (degree) for primaries coming from West.
IACT setenv AZM 270 // Corresponding astronomical azimuth, from geographical North towards East.
#else
PHIP $(AZM_FROM_NORTH) $(AZM_FROM_NORTH) // CORSIKA azimuth angles (degree) for primaries coming from North.
IACT setenv AZM 0 // Corresponding astronomical azimuth, from geographical North towards East.
#endif
*
#ifndef DIFFUSE
VIEWCONE 0. 0. // Can be a cone around fixed THETAP/PHIP (gamma point source)
#else
VIEWCONE 0. 10. // Diffuse components (gammas, electrons, protons & nuclei)
#endif
*
* Optionally override prepared demo run settings
*
#ifdef NSHOW
NSHOW $(NSHOW) // Requires NSHOW environment variable.
#endif
#ifdef EMIN
# ifdef EMAX
ERANGE $(EMIN)E3 $(EMAX)E3 // Requires EMIN and EMAX in units of TeV.
# endif
#endif
#ifdef ESLOPE
ESLOPE $(ESLOPE) // Requires spectral slope ESLOPE (<0)
#endif
*
* [ Site specific options ]
*
* The selected CTA South site is now near the ESO Paranal observatory:
* 24.683429 deg South, 70.316345 deg West, altitude: 2150 m a.s.l.
* Atmosphere 26 at altitude 2150.0 m:
* Atmospheric depth at ground level: 798.805 g/cm^2
* Density at ground level: 0.00095108 g/cm^3
* Refractivity at ground level: 0.00021986
* Maximum Cherenkov angle at ground level: 1.2014 deg.
ATMOSPHERE 26 Y // Should be slightly better for Paranal than profiles 1 (tropical) or 10 (HESS)
*
#ifdef YEAR2020
* Geomagnetic field for 2020.0:
MAGNET 20.925 -9.119 // Magnetic field at Paranal site [H, Z] (muT), 2020.
#else
* Geomagnetic field for 2025.0:
MAGNET 20.552 -9.367 // Magnetic field at Paranal site [H, Z] (muT), 2025.
#endif
*
ARRANG $(AZM_FROM_SOUTH) // Necessary rotation angle to account for B field declination (deg.)
*
* ./geomag70 IGRF12.COF 2020.00 D K2.150 -24.683429 -70.316345
* ./geomag70 IGRF13.COF 2025.00 D K2.150 -24.683429 -70.316345
*
*
* Geomag v7.0 - Jan 25, 2010
*
*
* Model: IGRF2015
* Latitude: -24.68 deg
* Longitude: -70.32 deg
* Altitude: 2.15 km
* Date of Interest: 2020.00
*
* -------------------------------------------------------------------------------
* Date D I H X Y Z F
* (yr) (deg min) (deg min) (nT) (nT) (nT) (nT) (nT)
* 2020.00 -3d 26m -23d 33m 20924.8 20887.2 -1253.5 -9119.4 22825.7
* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
* Date dD dI dH dX dY dZ dF
* (yr) (min/yr) (min/yr) (nT/yr) (nT/yr) (nT/yr) (nT/yr) (nT/yr)
* 2020.00 -11.1 -9.2 -79.7 -83.7 -62.6 -32.0 -60.2
* -------------------------------------------------------------------------------
*
* Model: IGRF2020
* Latitude: -24.68 deg
* Longitude: -70.32 deg
* Altitude: 2.15 km
* Date of Interest: 2025.00
*
* -------------------------------------------------------------------------------
* Date D I H X Y Z F
* (yr) (deg min) (deg min) (nT) (nT) (nT) (nT) (nT)
* 2025.00 -4d 32m -24d 30m 20551.8 20487.3 -1626.7 -9367.4 22585.9
* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
* Date dD dI dH dX dY dZ dF
* (yr) (min/yr) (min/yr) (nT/yr) (nT/yr) (nT/yr) (nT/yr) (nT/yr)
* 2025.00 -12.3 -10.7 -75.9 -81.6 -67.2 -42.7 -51.2
* -------------------------------------------------------------------------------
*
* [ Core range ]
*
#ifndef DIFFUSE
CSCAT 10 2000e2 0. // Use shower several times (gammas, point source only)
#else
CSCAT 20 2500e2 0. // Use shower several times (protons+electrons+..., larger area for diffuse origin)
#endif
#ifdef NSCAT
# ifdef CSCAT
CSCAT $(NSCAT) $(CSCAT)E2 0. // Requires NSCAT (10/20) and CSCAT (in units of meters).
# endif
#endif
*
* [ Telescope positions, for IACT option ]
*
OBSLEV 2147.E2 // Observation level (in cm) for CTA near Paranal, adapted to lowest telescope.
*
* 4 LSTs:
*
TELESCOPE -20.643E2 -64.817E2 34.30E2 12.50E2 # L-01
TELESCOPE 79.994E2 -0.768E2 29.40E2 12.50E2 # L-02
TELESCOPE -19.396E2 65.200E2 31.00E2 12.50E2 # L-03
TELESCOPE -120.033E2 1.151E2 33.10E2 12.50E2 # L-04
*
* 25 MSTs:
*
TELESCOPE -0.017E2 -0.001E2 24.35E2 8.60E2 # M-01
TELESCOPE -1.468E2 -151.221E2 31.00E2 8.60E2 # M-02
TELESCOPE -3.138E2 -325.245E2 39.00E2 8.60E2 # M-03
TELESCOPE 1.434E2 151.220E2 25.00E2 8.60E2 # M-04
TELESCOPE 3.104E2 325.243E2 23.50E2 8.60E2 # M-05
TELESCOPE 156.493E2 237.052E2 24.00E2 8.60E2 # M-06
TELESCOPE 147.428E2 74.202E2 21.00E2 8.60E2 # M-07
TELESCOPE 145.977E2 -77.019E2 26.00E2 8.60E2 # M-08
TELESCOPE 151.915E2 -240.013E2 30.00E2 8.60E2 # M-09
TELESCOPE -151.949E2 240.011E2 27.00E2 8.60E2 # M-10
TELESCOPE -146.011E2 77.017E2 28.00E2 8.60E2 # M-11
TELESCOPE -147.462E2 -74.203E2 28.00E2 8.60E2 # M-12
TELESCOPE -156.527E2 -237.053E2 38.50E2 8.60E2 # M-13
TELESCOPE 295.343E2 447.467E2 25.00E2 8.60E2 # M-14
TELESCOPE 317.086E2 159.593E2 18.50E2 8.60E2 # M-15
TELESCOPE 308.425E2 -2.960E2 19.50E2 8.60E2 # M-16
TELESCOPE 313.965E2 -165.650E2 22.50E2 8.60E2 # M-17
TELESCOPE 286.702E2 -453.054E2 38.50E2 8.60E2 # M-18
TELESCOPE -286.835E2 453.054E2 17.00E2 8.60E2 # M-19
TELESCOPE -313.599E2 165.646E2 30.50E2 8.60E2 # M-20
TELESCOPE -308.459E2 2.959E2 29.50E2 8.60E2 # M-21
TELESCOPE -316.720E2 -159.598E2 35.00E2 8.60E2 # M-22
TELESCOPE -295.477E2 -447.468E2 52.00E2 8.60E2 # M-23
TELESCOPE 582.262E2 -5.588E2 13.50E2 8.60E2 # M-24
TELESCOPE -582.296E2 5.587E2 36.00E2 8.60E2 # M-25
*
* 70 SSTs:
*
TELESCOPE 207.036E2 156.949E2 14.25E2 3.00E2 # S-01
TELESCOPE 203.986E2 -160.894E2 19.75E2 3.00E2 # S-02
TELESCOPE -204.020E2 160.893E2 22.25E2 3.00E2 # S-03
TELESCOPE -207.070E2 -156.950E2 28.25E2 3.00E2 # S-04
TELESCOPE 168.882E2 423.275E2 18.25E2 3.00E2 # S-05
TELESCOPE 160.729E2 -426.440E2 33.25E2 3.00E2 # S-06
TELESCOPE -160.762E2 426.438E2 10.25E2 3.00E2 # S-07
TELESCOPE -168.916E2 -423.277E2 42.25E2 3.00E2 # S-08
TELESCOPE 4.972E2 519.869E2 11.75E2 3.00E2 # S-09
TELESCOPE -5.006E2 -519.871E2 41.25E2 3.00E2 # S-10
TELESCOPE 395.510E2 399.996E2 11.25E2 3.00E2 # S-11
TELESCOPE 387.762E2 -407.513E2 28.25E2 3.00E2 # S-12
TELESCOPE -387.795E2 407.512E2 13.25E2 3.00E2 # S-13
TELESCOPE -395.545E2 -399.997E2 50.25E2 3.00E2 # S-14
TELESCOPE 495.605E2 105.269E2 9.25E2 3.00E2 # S-15
TELESCOPE 493.494E2 -114.761E2 11.75E2 3.00E2 # S-16
TELESCOPE -493.528E2 114.760E2 28.25E2 3.00E2 # S-17
TELESCOPE -495.640E2 -105.269E2 30.25E2 3.00E2 # S-18
TELESCOPE 6.927E2 723.596E2 11.75E2 3.00E2 # S-19
TELESCOPE -6.961E2 -723.599E2 59.75E2 3.00E2 # S-20
TELESCOPE 621.223E2 312.711E2 7.25E2 3.00E2 # S-21
TELESCOPE 615.114E2 -324.075E2 19.25E2 3.00E2 # S-22
TELESCOPE -615.142E2 324.575E2 19.75E2 3.00E2 # S-23
TELESCOPE -621.259E2 -312.711E2 49.25E2 3.00E2 # S-24
TELESCOPE 441.802E2 669.112E2 30.25E2 3.00E2 # S-25
TELESCOPE 428.882E2 -677.470E2 47.25E2 3.00E2 # S-26
TELESCOPE -428.914E2 677.467E2 7.25E2 3.00E2 # S-27
TELESCOPE -441.838E2 -669.114E2 70.25E2 3.00E2 # S-28
TELESCOPE 820.094E2 -7.869E2 4.25E2 3.00E2 # S-29
TELESCOPE -820.128E2 7.870E2 30.75E2 3.00E2 # S-30
TELESCOPE 228.460E2 794.887E2 25.25E2 3.00E2 # S-31
TELESCOPE 213.165E2 -799.128E2 56.25E2 3.00E2 # S-32
TELESCOPE -213.198E2 799.125E2 10.25E2 3.00E2 # S-33
TELESCOPE -228.495E2 -794.890E2 68.25E2 3.00E2 # S-34
TELESCOPE 9.046E2 944.425E2 27.25E2 3.00E2 # S-35
TELESCOPE -9.080E2 -944.430E2 75.25E2 3.00E2 # S-36
TELESCOPE 668.034E2 562.918E2 13.25E2 3.00E2 # S-37
TELESCOPE 657.111E2 -575.635E2 43.25E2 3.00E2 # S-38
TELESCOPE -657.142E2 575.635E2 8.25E2 3.00E2 # S-39
TELESCOPE -668.070E2 -562.919E2 66.25E2 3.00E2 # S-40
TELESCOPE 885.687E2 219.253E2 6.25E2 3.00E2 # S-41
TELESCOPE 881.318E2 -236.208E2 9.25E2 3.00E2 # S-42
TELESCOPE -881.350E2 236.210E2 24.25E2 3.00E2 # S-43
TELESCOPE -885.722E2 -219.252E2 42.25E2 3.00E2 # S-44
TELESCOPE 920.537E2 463.474E2 12.75E2 3.00E2 # S-45
TELESCOPE 911.476E2 -481.054E2 26.25E2 3.00E2 # S-46
TELESCOPE -911.507E2 481.054E2 11.25E2 3.00E2 # S-47
TELESCOPE -920.574E2 -463.473E2 59.25E2 3.00E2 # S-48
TELESCOPE 480.366E2 966.809E2 56.25E2 3.00E2 # S-49
TELESCOPE 461.727E2 -975.853E2 65.75E2 3.00E2 # S-50
TELESCOPE -461.758E2 975.849E2 16.75E2 3.00E2 # S-51
TELESCOPE -480.403E2 -966.813E2 87.25E2 3.00E2 # S-52
TELESCOPE 714.732E2 843.133E2 49.25E2 3.00E2 # S-53
TELESCOPE 698.425E2 -856.696E2 53.75E2 3.00E2 # S-54
TELESCOPE -698.455E2 856.694E2 14.75E2 3.00E2 # S-55
TELESCOPE -714.770E2 -843.135E2 84.75E2 3.00E2 # S-56
TELESCOPE 1100.131E2 -10.556E2 3.75E2 3.00E2 # S-57
TELESCOPE -1100.165E2 10.558E2 27.75E2 3.00E2 # S-58
TELESCOPE 249.865E2 1107.552E2 55.25E2 3.00E2 # S-59
TELESCOPE 228.566E2 -1112.148E2 77.75E2 3.00E2 # S-60
TELESCOPE -227.398E2 1112.131E2 25.25E2 3.00E2 # S-61
TELESCOPE -249.900E2 -1107.557E2 89.25E2 3.00E2 # S-62
TELESCOPE 964.010E2 730.717E2 27.25E2 3.00E2 # S-63
TELESCOPE 949.814E2 -749.083E2 46.25E2 3.00E2 # S-64
TELESCOPE -949.844E2 749.082E2 17.25E2 3.00E2 # S-65
TELESCOPE -964.048E2 -730.717E2 83.25E2 3.00E2 # S-66
TELESCOPE 1199.684E2 357.573E2 10.25E2 3.00E2 # S-67
TELESCOPE 1192.605E2 -380.527E2 19.25E2 3.00E2 # S-68
TELESCOPE -1192.635E2 380.530E2 12.75E2 3.00E2 # S-69
TELESCOPE -1199.721E2 -357.570E2 47.25E2 3.00E2 # S-70
*
* 25 extra MSTs (other camera type):
*
TELESCOPE -0.017E2 -0.001E2 24.35E2 8.60E2 # M-01
TELESCOPE -1.468E2 -151.221E2 31.00E2 8.60E2 # M-02
TELESCOPE -3.138E2 -325.245E2 39.00E2 8.60E2 # M-03
TELESCOPE 1.434E2 151.220E2 25.00E2 8.60E2 # M-04
TELESCOPE 3.104E2 325.243E2 23.50E2 8.60E2 # M-05
TELESCOPE 156.493E2 237.052E2 24.00E2 8.60E2 # M-06
TELESCOPE 147.428E2 74.202E2 21.00E2 8.60E2 # M-07
TELESCOPE 145.977E2 -77.019E2 26.00E2 8.60E2 # M-08
TELESCOPE 151.915E2 -240.013E2 30.00E2 8.60E2 # M-09
TELESCOPE -151.949E2 240.011E2 27.00E2 8.60E2 # M-10
TELESCOPE -146.011E2 77.017E2 28.00E2 8.60E2 # M-11
TELESCOPE -147.462E2 -74.203E2 28.00E2 8.60E2 # M-12
TELESCOPE -156.527E2 -237.053E2 38.50E2 8.60E2 # M-13
TELESCOPE 295.343E2 447.467E2 25.00E2 8.60E2 # M-14
TELESCOPE 317.086E2 159.593E2 18.50E2 8.60E2 # M-15
TELESCOPE 308.425E2 -2.960E2 19.50E2 8.60E2 # M-16
TELESCOPE 313.965E2 -165.650E2 22.50E2 8.60E2 # M-17
TELESCOPE 286.702E2 -453.054E2 38.50E2 8.60E2 # M-18
TELESCOPE -286.835E2 453.054E2 17.00E2 8.60E2 # M-19
TELESCOPE -313.599E2 165.646E2 30.50E2 8.60E2 # M-20
TELESCOPE -308.459E2 2.959E2 29.50E2 8.60E2 # M-21
TELESCOPE -316.720E2 -159.598E2 35.00E2 8.60E2 # M-22
TELESCOPE -295.477E2 -447.468E2 52.00E2 8.60E2 # M-23
TELESCOPE 582.262E2 -5.588E2 13.50E2 8.60E2 # M-24
TELESCOPE -582.296E2 5.587E2 36.00E2 8.60E2 # M-25
*
* [Interaction flags]
*
FIXHEI 0. 0 // First interaction height & target (0. 0 for random)
FIXCHI 0. // Starting altitude (g/cm**2). 0. is at boundary to space.
TSTART T // Needed for emission and scattering of primary
ECUTS 0.3 0.1 0.020 0.020 // Energy cuts for particles
MUADDI F // Additional info for muons not needed
MUMULT T // Muon multiple scattering angle
LONGI T 20. F F // Longit.distr. & step size & fit
MAXPRT 0 // Max. number of printed events
ECTMAP 1.E6 // Cut on gamma factor for printout
STEPFC 1.0 // Mult. scattering step length factor
*
* [ Cherenkov emission parameters ]
*
CERSIZ 5. // Not above 10 for super/ultra-bialkali QE; 7 is fairly OK; 5 should be safe.
CERFIL F // No old-style Cherenkov output to extra file
CWAVLG 240. 1000. // Cherenkov wavelength band - note SSTs sensitive into IR region.
*
* [ Debugging and output options ]
*
DEBUG F 6 F 1000000 // Debug flag and logical unit for output
DATBAS yes // Write a file with parameters used
DIRECT /dev/null // /dev/null means no normal CORSIKA data written
#ifdef WITHOUT_MULTIPIPE
* TELFIL cta-prod5-paranal-baseline.corsika.gz // If telescope simulation not done directly in pipe
TELFIL run${RUNNR}_${PRMNAME}_za${ZA}deg_azm${AZM}deg-paranal-baseline${extra_suffix2}.corsika.zst
#else
* TELFIL |${SIM_TELARRAY_PATH}/run_sim_cta-prod5-paranal-baseline:100:100:1 // Telescope photon bunch output (eventio format)
TELFIL |${SIM_TELARRAY_PATH}/run_sim_cta // Telescope photon bunch output (eventio format)
IACT TELOPT -c cta-prod5-paranal-baseline
#endif
IACT PRINT_EVENTS 100 100 1
*
* [ IACT tuning parameters ]
*
IACT SPLIT_AUTO 15M // Split data with more than 15 million bunches
IACT IO_BUFFER 1000MB // At 32 bytes per bunch this could be up to 500 MB
IACT MAX_BUNCHES 1000000 // Let photon bunch thinning set in earlier.
*
* [ This is the end, my friend ]
*
EXIT // terminates input
* ========================================================