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Rotating Beams

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1. Dept. Elect. Eng. Technion – Israel Institute of Technology. Rotating Beams. Yoav Y. Schechner. Joint studies with J. Shamir, R. Piestun, A. Greengard. propagation direction. a helical wavefront. Waves having a Phase Dislocation. Yoav Schechner. helical wavefront surface. - PowerPoint PPT Presentation
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Dept. Elect. Eng . Technion – Israel Institute of Technology Rotating Beams Yoav Y. Schechner 1 Joint studies with J. Shamir, R. Piestun, A. Greengard
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Page 1: Rotating Beams

Dept. Elect. Eng.Technion – Israel Institute of Technology

Rotating Beams

Yoav Y. Schechner

1

Joint studies with J. Shamir, R. Piestun, A. Greengard

Page 2: Rotating Beams

Yoav Schechner

Waves having a Phase Dislocation

propagation direction

a helical wavefront

Page 3: Rotating Beams

Yoav Schechner

propagation direction

helical wavefront surface

local k-vectors (normals to the wavefront surface) have azimuthal

component

local k-vectors

orbital angular

momentum in the

wave

k vector : momentu

m

Waves having a Phase Dislocation

Page 4: Rotating Beams

Schechner & Shamir

propagation direction

Isotropic dislocation: helical

wavefront

propagation directionAnisotropic dislocation

Parameterizations

Morphological:• Stretch angle

• Eccentricity

• Dark fringe: a limit of eccentricity

Physical:

• Superposition of

isotropic waves • Dark fringe:

annihilation of isotropic dislocations

• Angular momentum

Anisotropic Dislocations

Page 5: Rotating Beams

Rotating PSF

Schechner

Page 6: Rotating Beams

Schechner et. al, Physical Review E 1996

Computer-Generated Hologram

(Diffractive Optical Element)

Page 7: Rotating Beams

Utopian Geometric PSF

Width changes linearly with z

z

Yoav Schechner

Page 8: Rotating Beams

Standard PSF

Width changes with z

…by just a 2nd order

z

Page 9: Rotating Beams

Rotating PSF

Standard PSF

Greengard, Schechner, Piestun

Page 10: Rotating Beams

Greengard, Schechner, Piestun: Depth from diffracted rotation


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