Difference between revisions of "Kerr - July 29, 2016"

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** [[media:preadj7.0mm.xlsx]]
 
** [[media:preadj7.0mm.xlsx]]
  
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+
--- adjustments made on linear stage in an attempt to gain parallel relation to foil, We moved legs of table to be parallel with solenoid.
 +
 
 +
Note: Center at 12.8 mm
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* far right 17.3 mm (on micrometer)
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** [[media:farright17.8mm.xlsx]]
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** This is not pretty^
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* right center at 15.4 mm (on Micrometer)
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** [[media:rightcenter15.4mm.xlsx]]
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* at 12.8 mm (on Micrometer) w/ lens... Note: I did not finish this measurement or foolishly did not save it...
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** [[media:12.8mmw/lens.xlsx]]
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* at 12.8 mm (on Micrometer) w/out lens... this was a test to see if the lens was the reason for the "dip"... As soon as we saw a dip we agreed the lens was not affecting signal therefore we didn't finish the measurement
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** [[media:12.8mmw/outlens.xlsx]]
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 +
 
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* With mirror in place of foil at center 12.8 mm
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** [[media:12.8mmmirrorbackground.xlsx]]
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* 25 amp increments (as opposed to 50 amp inc.) at 12.8 mm (on micrometer)
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** [[media:12.8mm25inccenter.xlsx]]
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* Stability check at 12.8 mm (on Micrometer) with constant I of 200 amps over span of 16 min
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** [[media:stability200amps.xlsx]]

Revision as of 00:33, 30 July 2016

Magnetic Measurement Facility readings of pucks, Steel () and Molybdenum --> media:LDGT01 Puck Measurements for MOKE 16-7-28.xlsx

This graph reads 6.33 Gauss/1 Amp. Note this is only the magnetic field at the surface of the Steel () puck.


Important INFO to note

  • foil surface diameter across is 11 mm +-.5 mm
  • Laser dot diameter through polarizer to foil surface is 2mm +-.5 mm

Excel Sheets for MMF data taken


---First, Data taken with original setup. Stage untouched since the 28th. Before stage was realigned in an attempt to be parallel with foil

--- adjustments made on linear stage in an attempt to gain parallel relation to foil, We moved legs of table to be parallel with solenoid.

Note: Center at 12.8 mm

  • far right 17.3 mm (on micrometer)
  • right center at 15.4 mm (on Micrometer)
  • at 12.8 mm (on Micrometer) w/ lens... Note: I did not finish this measurement or foolishly did not save it...
  • at 12.8 mm (on Micrometer) w/out lens... this was a test to see if the lens was the reason for the "dip"... As soon as we saw a dip we agreed the lens was not affecting signal therefore we didn't finish the measurement