Commit dc09faa7 authored by Daniel Brown's avatar Daniel Brown
Browse files

more updates to test files, missing spaces for new ifo matrix solver

parent f593713a
#-----------------------------------------------------------------------
l i1 1 0 nMU3in
mod eom4 $fSR .3 1 pm 0 nMU3in nMU3_1 # Schnupp1 (SR control)
mod eom5 $fMI .5 1 pm 0 nMU3_1 nMU3out # Schnupp2 (MI control)
mod eom4 $fSR .3 1 pm 0 nMU3in nMU3_1_1 # Schnupp1 (SR control)
s s0 0 nMU3_1_1 nMU3_1_2
mod eom5 $fMI .5 1 pm 0 nMU3_1_2 nMU3out # Schnupp2 (MI control)
s smcpr3 4.391 nMU3out nBDIPR1
bs* BDIPR 50 30 0 45 nBDIPR1 nBDIPR2 dump dump
s smcpr4 0.11 nBDIPR2 nMPRo
......@@ -99,4 +100,3 @@ put pMIq f2 $x1
#xparam pMIq f2 1 0
yaxis log abs:deg
gnuterm no
#debug 256
m* m1 100 10 0 n1 n2
m* m1 100 10 0 n1_2 n2
s s1 600 n2 n3
m* m2 1000 10 0 n3 n4
s s2 .5 n4 n5
......@@ -11,7 +11,8 @@ m* m4 10 1 0 n7 n8
l i1 1 0 n0
mod eom1 10M .3 1 pm n0 n1
mod eom1 10M .3 1 pm n0 n1_1
s s_1 0 n1_1 n1_2
fsig sig1 m4 1000 0
......@@ -22,7 +23,7 @@ fsig sig1 m4 1000 0
#sum
ad amp1 1000 n1
ad amp1 1000 n1_1
xaxis m1 phi lin -20 20 200
put m2 phi $x1
......
debug 256
m* m1 1000 10 0 n1 n2
m* m1 1000 10 0 n1_2 n2
s s1 600 n2 n3
m* m2 1000 10 0 n3 n4
s s2 .5 n4 n5
......@@ -11,8 +11,8 @@ m* m4 1000 10 0 n7 n8
l i1 1 0 n0
mod eom1 10M .3 1 pm n0 n1
mod eom1 10M .3 1 pm n0 n1_1
s s_1 0 n1_1 n1_2
#pd pow_in n0*
#pd pow_cav1 n2
......
......@@ -11,24 +11,28 @@
# `-' `-'
#------------------------------------------------------------------
m m1 0.9 0.0001 0 n1 n2 # mirror R=0.9999 T=0.0001, phi=0
s s1 1200 n2 n3 # space L=1200
m m2 0.98 0.00005 0 n3 dump # mirror R=1 T=0 phi=0
l i1 1 0 n0 # laser P=1W, f_offset=0Hz
mod eo1 $f 0.3 3 pm n0 n1 # phase modulator f_mod=40kHz
mod eo1 $f 0.3 3 pm n0 n1_1 # phase modulator f_mod=40kHz
# midx=0.3 order=3
s s0 0 n1_1 n1_2
m m1 0.9 0.0001 0 n1_2 n2 # mirror R=0.9999 T=0.0001, phi=0
s s1 1200 n2 n3 # space L=1200
m m2 0.98 0.00005 0 n3 dump # mirror R=1 T=0 phi=0
const f 40k
pd1 out1 $f 0 n1
pd1 out2 $f 90 n1
ad car 0 n1
ad SB+ $f n1
ad SB- -$f n1
pd1 out1 $f 0 n1_2
pd1 out2 $f 90 n1_2
ad car 0 n1_2
ad SB+ $f n1_2
ad SB- -$f n1_2
maxtem 10
xaxis m2 phi lin -90 90 2000
xaxis m2 phi lin -90 90 100
gnuterm no
time
......@@ -13,13 +13,14 @@
l i1 1 0 nMU3_1
#gauss beam_in i1 nLaser 1m -5.4
mod eom5 37.16M .3 1 pm 0 nMU3_1 nMU3_2 # PRC control
mod eom5 37.16M .3 1 pm 0 nMU3_1 nMU3_2_1 # PRC control
#mod eom4 12.02448M .3 2 pm 0 nMU3in nMU3_1 # Schnupp1 (SR control)
#mod eom5 14.905093M .5 1 pm 0 nMU3_1 nMU3_2 # Schnupp2 (MI control)
#lens lpr 1.8 nMU3_2 nMU3_3
# some rather arbitrary thermal lense for the isolators and the EOMs:
#lens therm 5.2 nMU3_3 nMU3_4
isol d2 120 nMU3_2 nMU3out # Faraday Isolator
s s_0 0 nMU3_2_1 nMU3_2_2
isol d2 120 nMU3_2_2 nMU3out # Faraday Isolator
# dummy beamsplitter to apply freq. modulation peak
......@@ -47,8 +48,9 @@ s smcpr4 0.11 nBDIPR2 nPRo
# second (inner) surface of MPR
#m* MPR 1000 38 0. nPRo nPRi # 1000ppm power recycling
#m MPR 0 1 0. nPRo nPRi # no power recycling
m MPR 0.9865 0.0135 90. nPRo nPRia # T=1.35% PR
bs Mloss 0. 1 0. 0 nPRia dump nPRi dump
m MPR 0.9865 0.0135 90. nPRo nPRia_1 # T=1.35% PR
s s_1 0 nPRia_1 nPRia_2
bs Mloss 0. 1 0. 0 nPRia_2 dump nPRi dump
s swest 1.145 nPRi nBSwest
......
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