# File: /home/sinfoni/.esorex/sinfo_rec_jitter.rc # # Note: This configuration file has been automatically # generated by the esorex (v3.6) program. # # Date: 21-Jan-2007 17:05:46 # # # --product-density # Density of pipeline products: 0 (low), 1 (med-QC), 2 (high-debug). This option # may also be set using the environment variable sinfoni.product.density. sinfoni.product.density=1 # --stack-lo_rej # lower rejection. This option may also be set using the environment variable # sinfoni.stacked.low_rejection. sinfoni.stacked.low_rejection=0.1 # --stack-hi_rej # higher rejection. This option may also be set using the environment variable # sinfoni.stacked.high_rejection. sinfoni.stacked.high_rejection=0.1 # --stack-flat_ind # Flat Index:. This option may also be set using the environment variable # sinfoni.stacked.flat_index. sinfoni.stacked.flat_index=TRUE # --stack-mask_ind # BP Mask Interpolation Switch: indicates if the bad pixel mask should be # applied (1) or not (0). This option may also be set using the environment # variable sinfoni.stacked.mask_index. sinfoni.stacked.mask_index=1 # --stack-ind_ind # indicates if the bad pixels should be indicated (yes) or interpolated (no). # This option may also be set using the environment variable # sinfoni.stacked.ind_index. sinfoni.stacked.ind_index=FALSE # --stack-mask_rad # Max distance bad-good pix:. This option may also be set using the environment # variable sinfoni.stacked.mask_rad. sinfoni.stacked.mask_rad=4 # --stack-gauss_ind # Gaussian Convolution Switch:. This option may also be set using the # environment variable sinfoni.stacked.gauss_index. sinfoni.stacked.gauss_index=FALSE # --stack-khw # Kernel Half Width. This option may also be set using the environment variable # sinfoni.stacked.kernel_half_width. sinfoni.stacked.kernel_half_width=2 # --stack-warpfix_ind # Warp Fix Index:. This option may also be set using the environment variable # sinfoni.stacked.warpfix_ind. sinfoni.stacked.warpfix_ind=TRUE # --stack-warpfix_kernel # Warpfix kernel:. This option may also be set using the environment variable # sinfoni.stacked.warpfix_kernel. sinfoni.stacked.warpfix_kernel=tanh # --stack-qc_thresh_min # qc_thresh_min. This option may also be set using the environment variable # sinfoni.stacked.qc_thresh_min. sinfoni.stacked.qc_thresh_min=0 # --stack-qc_thresh_max # qc_thresh_max. This option may also be set using the environment variable # sinfoni.stacked.qc_thresh_max. sinfoni.stacked.qc_thresh_max=49000 # --objnod-aj_method # Method to reduce autojitter template frames Raw frames are object only # exposures. object-fake_sky pairs are generated. 0: no sky for all objects. # This option may also be set using the environment variable # sinfoni.objnod.autojitter_method. sinfoni.objnod.autojitter_method=1 # --objnod-scales_sky # Spatial median (sky) subtraction from cube: (If # autojitter_method==1),indicates if the spatial median of each plane should # be subtracted (TRUE) or not (FALSE) from each cube plane. This option may # also be set using the environment variable sinfoni.objnod.scales_sky. sinfoni.objnod.scales_sky=TRUE # --objnod-ks_clip # Kappa-sigma clipping of coadded cube: indicates if a kappa-sigma clipping # should be performed (TRUE) or not (FALSE) on each plane of the coadded # cube. This option may also be set using the environment variable # sinfoni.objnod.ks_clip. sinfoni.objnod.ks_clip=TRUE # --objnod-kappa # kappa value for kappa-sigma clipping of coadded cube. This option may also be # set using the environment variable sinfoni.objnod.kappa. sinfoni.objnod.kappa=2.0 # --objnod-size_x # Cube x size: x-pixel size of the final combined data cube,must lie between 64 # and 128. If 0 it is computed automatically. This option may also be set # using the environment variable sinfoni.objnod.size_x. sinfoni.objnod.size_x=0 # --objnod-size_y # Cube y size: y-pixel size of the final combined data cube,must lie between 64 # and 128.If 0 it is computed automatically. This option may also be set # using the environment variable sinfoni.objnod.size_y. sinfoni.objnod.size_y=0 # --objnod-no_coeffs # number of coefficients for the polynomial interpolation. This option may also # be set using the environment variable sinfoni.objnod.n_coeffs. sinfoni.objnod.n_coeffs=3 # --objnod-ns_ind # Nord South Index Switch: indicates if the slitlet distances are determined by # a north-south-test (TRUE) or slitlet edge fits (FALSE). This option may # also be set using the environment variable sinfoni.objnod.nord_south_index. sinfoni.objnod.nord_south_index=TRUE # --objnod-fine_tune_mtd # Fine Tuning Method: indicator for the shifting method to use (P: polynomial # interpolation, S: cubic spline interpolation). This option may also be set # using the environment variable sinfoni.objnod.fine_tuning_method.

sinfoni.objnod.fine_tuning_method=P # --objnod-order # Fine Tuning polynomial order: order of the polynomial if the polynomial # interpolation shifting method is used. This option may also be set using # the environment variable sinfoni.objnod.order. sinfoni.objnod.order=2 # --objnod-lo_rej # lower rejection: percentage of rejected low value pixels for averaging the sky # spectra. This option may also be set using the environment variable # sinfoni.objnod.low_rejection. sinfoni.objnod.low_rejection=10.0 # --objnod-hi_rej # higher rejection: percentage of rejected high value pixels for averaging the # sky spectra. This option may also be set using the environment variable # sinfoni.objnod.high_rejection. sinfoni.objnod.high_rejection=10.0 # --objnod-tol # Tolerance: pixel tolerance, this distance tolerance to the diagonal dividing # line is not considered for the sky extraction to be sure to have a clean # sky due to positioning tolerance and crossing through pixels. This option # may also be set using the environment variable sinfoni.objnod.tolerance. sinfoni.objnod.tolerance=2 # --objnod-jit_ind # Jitter Index: jitter mode indicator: TRUE: Auto-Jitter, FALSE: user defined # jitterThe size_x size_y kernel_type parameters are only used if jitterInd # is set to yes, that means in auto-jittering mode!. This option may also be # set using the environment variable sinfoni.objnod.jitter_index. sinfoni.objnod.jitter_index=TRUE # --objnod-kernel_typ # Kernel Type:the name of the interpolation kernel to shift the single cubes to # the correct places inside the big combined cube. This option may also be # set using the environment variable sinfoni.objnod.kernel_type. sinfoni.objnod.kernel_type=tanh # --objnod-vllx # Vignetting on llx: pixels vignetted from lower left corner X coordinate of # contributing cubes before coaddition. This option may also be set using the # environment variable sinfoni.objnod.vllx. sinfoni.objnod.vllx=0 # --objnod-vlly # Vignetting on lly: pixels vignetted from lower left corner Y coordinate of # contributing cubes before coaddition. This option may also be set using the # environment variable sinfoni.objnod.vlly. sinfoni.objnod.vlly=0 # --objnod-vurx # Vignetting on urx: pixels vignetted from upper right corner X coordinate of # contributing cubes before coaddition. This option may also be set using the # environment variable sinfoni.objnod.vurx. sinfoni.objnod.vurx=0 # --objnod-vury # Vignetting on ury: pixels vignetted from upper right corner Y coordinate of # contributing cubes before coaddition. This option may also be set using the # environment variable sinfoni.objnod.vury. sinfoni.objnod.vury=0 # --objnod-fcol # First column offset:. This option may also be set using the environment # variable sinfoni.objnod.fcol. sinfoni.objnod.fcol=0.0 # --objnod-sky_cor # Sky residuals correction:. This option may also be set using the environment # variable sinfoni.objnod.sky_cor. sinfoni.objnod.sky_cor=TRUE # --skycor-mask_ws # Starting wavelength for object-sky cross correlation. This option may also be # set using the environment variable sinfoni.sinfo_utl_skycor.mask_ws. sinfoni.sinfo_utl_skycor.mask_ws=1.4 # --skycor-mask_we # End wavelength for object-sky cross correlation. This option may also be set # using the environment variable sinfoni.sinfo_utl_skycor.mask_we. sinfoni.sinfo_utl_skycor.mask_we=2.5 # --skycor-min_frac # Threshold value for fraction of spatial pixels to be sky. This option may also # be set using the environment variable sinfoni.sinfo_utl_skycor.min_frac. sinfoni.sinfo_utl_skycor.min_frac=0.8 # --skycor-line_hw # Threshold value for full width in pixels of unresolved emission line. Lines # with FWHM smaller than this value are not considered in the object-sky # cross correlation and in computation of the optimal sky lines scaling # factor. This option may also be set using the environment variable # sinfoni.sinfo_utl_skycor.line_half_width. sinfoni.sinfo_utl_skycor.line_half_width=4.0 # --skycor-scale_method # Optimal sky lines scaling factor computation method: amoeba fit (0), maximum # likelihood (1). This option may also be set using the environment variable # sinfoni.sinfo_utl_skycor.scale_method. sinfoni.sinfo_utl_skycor.scale_method=1 # --skycor-rot_cor # Computes scaling factor correction due to rotational levels transitions. This # option may also be set using the environment variable # sinfoni.sinfo_utl_skycor.rot_cor. sinfoni.sinfo_utl_skycor.rot_cor=TRUE # --skycor-fit_obj_noise # Do Gaussian fit of object noise. This option may also be set using the # environment variable sinfoni.sinfo_utl_skycor.fit_obj_noise. sinfoni.sinfo_utl_skycor.fit_obj_noise=FALSE # --skycor-niter # Number of iterations of background fit. This option may also be set using the # environment variable sinfoni.sinfo_utl_skycor.niter. sinfoni.sinfo_utl_skycor.niter=10 # --std_star-switch # Switch to activate spectrum extraction. This option may also be set using the # environment variable sinfoni.std_star.switch. sinfoni.std_star.switch=TRUE # --std_star-lo_rej # lower rejection. This option may also be set using the environment variable # sinfoni.std_star.low_rejection. sinfoni.std_star.low_rejection=0.1 # --std_star-hi_rej # high rejection. This option may also be set using the environment variable # sinfoni.std_star.high_rejection. sinfoni.std_star.high_rejection=0.1 # --std_star-fwhm_fct # Factor to find 2D-Gauss FWHM. The extraction box is: # halfbox_x=halfbox_y=fwhm_factor*(fwhm_x+fwhm_y)*0.5. This option may also # be set using the environment variable sinfoni.std_star.fwhm_factor. sinfoni.std_star.fwhm_factor=5.0 # --std_star-conv_ind # Intensity Conversion Index:. This option may also be set using the environment # variable sinfoni.std_star.conversion_index. sinfoni.std_star.conversion_index=TRUE # --psf-switch # Switch to activate PSF-related (Strehl/Encircled energy) computation. This # option may also be set using the environment variable sinfoni.psf.switch. sinfoni.psf.switch=TRUE # # End of file