Difference between revisions of "09-07-2016"

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Draft run plan
+
=No target collimator open=
  
No target collimator open
+
;Beam COnditions
DU cylinder target, 1” Al radiator, collimator slit open, HV -1700V,
+
:11.1 MeV , 2 ns pulse width
*Find lowest thresholds to run.
+
 
(3)Study forward detector gamma flas with Pb curtains
+
=DU cylinder target, 1” Al radiator, collimator slit open, HV -1700V,*Find lowest thresholds to run.=
(4)Thorium strip, collimator squeeze down.
+
=Study forward detector gamma flas with Pb curtains=
(5)No target run
+
=Thorium strip, collimator squeeze down.=
(6)Determine how many fissions per pulse.
+
=No target run=
(7)run 1 mg HEU to see (probably miserable) rates
+
=Determine how many fissions per pulse.=
(8)Exploratory measurements with 47% HEU.
+
=run 1 mg HEU to see (probably miserable) rates=
(9) CFD studies
+
=Exploratory measurements with 47% HEU.=
(10)P.S. sweep magnet in/out
+
= CFD studies=
(11) Long run on Thorium
+
=P.S. sweep magnet in/out=
(12) Long run on 1 mg HEU
+
= Long run on Thorium=
 +
= Long run on 1 mg HEU=

Revision as of 13:13, 7 September 2016

No target collimator open

Beam COnditions
11.1 MeV , 2 ns pulse width

DU cylinder target, 1” Al radiator, collimator slit open, HV -1700V,*Find lowest thresholds to run.

Study forward detector gamma flas with Pb curtains

Thorium strip, collimator squeeze down.

No target run

Determine how many fissions per pulse.

run 1 mg HEU to see (probably miserable) rates

Exploratory measurements with 47% HEU.

CFD studies

P.S. sweep magnet in/out

Long run on Thorium

Long run on 1 mg HEU