The following input will simulate a 1:1 array of GRIN rods (see Figure 2):
j"wbq-n,7 nX\Q{R2 c3X8Wi7m VU ,tCTXz RDM;LEN
FtmI\, TIT 1:1 GRIN ARRAY
=qy{8MsjA NAO 0.1
-h1FrDBt TEL ! Telecentric
Ua\<oD79] DIM M
c,FhI~>R WL 633
vI1UFD
D YOB -5 5 0 -10 10
l~j{i/> PRV ! GRIN material (SELFOC form)
g'nN#O PWL 633
z3|)WS^ 'SLSPRV' 1.5
{q^?Rw SEL 1 ! Grin step size
6Cvg-X@ SEL C1 .076 ! First coeff. of SELFOC formula
ly)L%hG END
+8eW/Bs@2 So 0 10.222
X0+M|8: RED -1
C$#X6Q!, S 0 0
8^)K|+_'m S 0.0 60.0 'SLSPRV' ! GRIN rod (array channels)
;&?l1Vu STOP
a]nyZdt` CIR 1.25 ! Aperture of each channel
&.`/ln ! (applies to entire length
r5(-c]E7 ! of GRIN rod)
l!9G ! Array definition
& GM&, {xS\CC(g ! ARR x_spacing y_spacing y_offset max_x max_y
"F8A:tR ARR 2.5 2.5 0 0 0
o^b4l'&o S 0 0
bWOn`#+& EAR ! End array
=h/0k
y S 0 10.222
+'fdAc:5', PIM
'@
C\