The HeNe laser used in holography research An 8 milliwatt HeNe laser in S-135 of

The HeNe laser used in holography research An 8 milliwatt HeNe laser in S-135 of

The HeNe laser used in holography research An 8 milliwatt HeNe laser in S-135 of

Hazelton, Andie, Managing Editor has reference to this Academic Journal, PHwiki organized this Journal The HeNe laser used in holography research An 8 milliwatt HeNe laser in S-135 of the Science Building. This is an example of an inexpensive r in addition to om polarization Helium Neon laser emitting light at 632.8 nm. Transmission Holography Glass Plate Laser Beam Object Holographic film Reflection Holography in its simplest as long as m Film Emulsion

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What is Reflection Holography The process itself is referred to as holography; whereas the recording film is called a hologram These terms were coined by Denis Gabor (the father of holography) in 1947 The word hologram is derived from the Greek words “holos” (meaning whole or complete) in addition to “gram” (meaning message) Light contains wave characteristics. Thus various light beams can interfere destructively (dark spot) or constructively (bright spot) If coherent light beams (waves of the same phase with respect to each other) are allowed to combine the result will be as described in the previous bullet. This is called interference In this research a helium neon (HeNe) laser is used to produce coherent light waves of wavelength 633 nanometers (nm) in addition to can be identified by its bright red color In one as long as m of a reflection hologram one beam penetrates the film in addition to another similar beam is scattered from an object to the rear of the film backwards onto the film itself. The resulting interference produces a white light hologram of which several examples are shown here Close-up View of Object in addition to Film Plane Experimental Setup as long as Reflection Holography

The Michelson Interferometer Diagram of the Michelson Interferometer

Some things you must be concerned about in Holography What is Polarization Polarization of the laser beam Linear Polarization R in addition to om Polarization All laser light is polarized. The linear polarized laser if fixed. Rotate the laser to shift the polarization.

PFG-03M Slavich Film Ultra fine-grained red sensitive plates in addition to film designed as long as reflection hologram recording. Average grain size is 8-12nm, resolving power more than 5000 lines/mm, spectral sensitivity range includes 633nm, 647nm. Using GP-2 JARB (JD-4) Processing Copied From: Teaching Holography in Classrooms Making Holograms with PFG-03M Plates with JD-4 By T. H. Jeong, Riley Aumiller, Raymond Ro, (Lake Forest College) in addition to Jeff Blythe (University of Cambridge) Edited by Alec Jeong Copyright © 2003-2005 The discovery of using JARB as long as quick processing of holograms recorded on Slavich PFG-03M plates in addition to film was made by Tung H. Jeong, Riley Aumiller, Raymond Ro, in addition to Jeff Blyth; thus it is called the JARB processing regime. Commercially, the chemical developer used is now called called JD-4. JARB is ideal as long as making holograms during a lecture demonstration, or as long as laboratory exercises or workshops where many students must make holograms in a limited time. The advantage of JARB is that it effectively increases the sensitivity of PFG-03M ten times, from 1.50 to 0.15 millijoules/cm2. Thus the exposure time as long as holograms is one-tenth as long as when processed in GP-2. The typical development time is 20 seconds. Finally, drying time is drastically reduced by using warm air (from a hair dryer) because the JARB development hardens the emulsion. The total processing time using JARB can be as short as three minutes, from developing to drying! JARB (JD-4) Processing Using PFG-03M film or plate, expose the hologram so that each square centimeter area receives 0.15 to 0.4 millijoules of energy (there is batch-to-batch variation). For example, if a 5 milliwatt diode laser without a lens is location 40 cm from the plate, the exposure time is approximately 5 to 7 seconds. Note typo error!

To view your hologram, you need an appropriate viewing angle in addition to light source. With the appropriate light source, view the image by shining the spot light at the hologram from approximately the same angle you had the laser shoot when you were first exposing plate. You might need to tilt the plate left in addition to right or as long as ward in addition to back to maximize the brightness of the image. It may take some practice. As as long as the light source, ideally, you want a bright spot light. Spot lights concentrate the light using a built-in reflector so that all the light is confined to the correct angle. Spot light are available at any K-Mart, Wal-Mart, in addition to most other retail store. As a cheap substitute, you could also use a $1.98 (batteries included!) Rayovac pin light from K-Mart. In general, you cannot view a reflection hologram with a laser, fluorescent light, or light from a frosted bulb. Viewing your hologram The “st in addition to ard medallion” used as long as calibration purposes Jack Daniels Whiskey Medallion done by student

Same Hologram but different View Hologram of a Bunny Figurine taken during Modern Physics Lab

Hazelton, Andie Lumberjack Managing Editor

Hazelton, Andie Managing Editor

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