Lens aligning various angle of incidence light striking it?

In summary: A normal incidence dome would work, but you would need some type of optics to direct the light onto the back of the dome.
  • #1
shane2
89
3
Assume a flat one square foot vertical plate attached 6 feet up, outside on a wall.

Dozens of yards away are various solar reflectors angled to reflect sunlight onto that plate.

Problem is, the plate requires to be only struck straight on at a 0 degree angle of incidence.

And, all the reflected sources are striking it at some other angle up to 45 degrees off center.

Is there any lens or dome or reflective funnel arrangement, or something else altogether, that
could be put in front of the plate to take all those different angled incoming sunlight sources
and align them all, to next be exiting it to strike the plate behind it straight on at a 0 degree
angle of incidence?

Thank you for any thoughts or suggestions.
 
Science news on Phys.org
  • #2
shane2 said:
Is there any lens or dome or reflective funnel arrangement, or something else altogether, that
could be put in front of the plate to take all those different angled incoming sunlight sources
and align them all, to next be exiting it to strike the plate behind it straight on at a 0 degree
angle of incidence?

There's no combination that could make all the light strike at exactly 0 degrees, but a simple negative lens placed near the plate might reduce the angle, making it closer to normal incidence (perpendicular to the plate's surface). I don't know what power or diameter the lens would need to be though.
 
  • #3
Drakkith said:
There's no combination that could make all the light strike at exactly 0 degrees, but a simple negative lens placed near the plate might reduce the angle, making it closer to normal incidence (perpendicular to the plate's surface). I don't know what power or diameter the lens would need to be though.
Wonder if somebody has done a stacked arrangement of such lens, to progressively get average of off angles closer to zero?
 
  • #4
shane2 said:
Is there any lens or dome or reflective funnel arrangement, or something else altogether, that
could be put in front of the plate to take all those different angled incoming sunlight sources
and align them all, to next be exiting it to strike the plate behind it straight on at a 0 degree
angle of incidence?

Only if it is a lossy system, otherwise you violate the first law of thermodynamics (conservation of etendue).
 
  • #5
Andy Resnick said:
Only if it is a lossy system, otherwise you violate the first law of thermodynamics (conservation of etendue).
Gotcha, thanks for your patience with me.

I was kinda imagining an optical cone or funnel of sorts, creating a more laminar flow of light as the angles reduced with every reflection, finally approaching 0 degrees. But, each reflection along the way loses a little power, yes?
 
  • #6
shane2 said:
I was kinda imagining an optical cone or funnel of sorts, creating a more laminar flow of light as the angles reduced with every reflection, finally approaching 0 degrees. But, each reflection along the way loses a little power, yes?

There are such things used by people doing non-imaging optics, e.g. a Winston cone is an example on a much smaller scale than what you need, but yes there is loss at each reflection. Do the rays need to have exactly 0 degree angle of incidence?
 
  • #7
pixel said:
There are such things used by people doing non-imaging optics, e.g. a Winston cone is an example on a much smaller scale than what you need, but yes there is loss at each reflection. Do the rays need to have exactly 0 degree angle of incidence?
Pixel,
Thanks for Winston Cone tip, interesting.

I'm trying to get clarification from two hot mirror manufacturers, in regards to how transmission/reflectance degrades when AOI exceeds 0 or 45. They are optimized for either one or the other and earlier inquiry to Edmunds Optical regarding their UV/IR filters had them respond with; "...the angle of incidence is critical to the performance of the filter. If the angle is off, the efficiency will not be the same as the published specifications." Waiting to hear back now if that applies also to the hot/cold mirrors and exactly how much is too much AOI.
 
  • #8
Why does the light need to be at a near-zero angle of incidence?
 
  • #9
Drakkith said:
Why does the light need to be at a near-zero angle of incidence?
The devices the OP describes, hot mirror and cold mirror, are interference filters. At off-angle incidence the optical path through the various layers is longer than the needed 1/4 or 1/2 wavelength of light that is needed for destructive or constructive interference. This shifts the wavelength of peak attenuation or transmission away from the design value. Additionally, the further the incident angle is away from the normal, the greater the reflective losses.
 
  • #10
shane2 said:
Assume a flat one square foot vertical plate...
Any chance that flat plate can be replaced with a dome-shape to get normal incidence, and place any needed optics behind it?
 

Related to Lens aligning various angle of incidence light striking it?

1. What is lens aligning various angle of incidence light striking it?

Lens aligning various angle of incidence light striking it refers to the process of adjusting the position and orientation of a lens so that it can properly focus light from different angles of incidence onto a specific point or area.

2. Why is it important to align lenses for different angles of incidence?

Aligning lenses for different angles of incidence is important because it ensures that light from all angles is properly focused, resulting in clear and accurate images. Without proper alignment, the image quality may be distorted or blurred.

3. How is lens alignment for different angles of incidence achieved?

Lens alignment for different angles of incidence is achieved by using specialized equipment such as a lens aligner or a collimator. These tools allow for precise adjustments to be made to the position and orientation of the lens.

4. What factors can affect the alignment of lenses for different angles of incidence?

Several factors can affect the alignment of lenses for different angles of incidence, including the curvature and thickness of the lens, the quality of the lens material, and the angle at which the light is entering the lens.

5. Are there any techniques or tricks for aligning lenses for different angles of incidence?

Yes, there are several techniques and tricks that can be used to align lenses for different angles of incidence, such as using a laser or light source to check alignment, using shims or spacers to adjust the position of the lens, and using a microscope to view the alignment of the lens.

Similar threads

Replies
2
Views
1K
Replies
10
Views
3K
Replies
15
Views
5K
Replies
1
Views
1K
Replies
5
Views
1K
Replies
1
Views
1K
  • Introductory Physics Homework Help
Replies
4
Views
1K
Replies
1
Views
3K
Back
Top