Depth offield photography examples

Glare From a Plane Surface: Glare from highly reflective surfaces or optical windows is removed by putting a polarizer over the lens. Due to partial polarization of light, the light source may or may not require a polarizing filter in this scenario.

Even though every photograph is two-dimensional, it portrays a three-dimensional world. The distance between the camera and the subject and the distance behind the subject to the “end” of the photo is the “depth” of the photo. The amount of depth that is in focus is the depth of field.

In each of the photos below you can see that the focus is on the bunny but how blurry the background is (DOF) changes drastically depending on the aperture.

Hey Adam! Thanks for the comment. To clarify sensor size does affect depth of field, but since most people use one camera consistently (and thus one sensor size) I didn’t want to go into too much detail about how changing sensor size affects DOF. That subject could be a whole article on its own but since most readers of this particular blog probably don’t switch between full frame and crop, I felt it was the least important factor to discuss. Hope that makes more sense! Thanks for asking!

Understanding DOF will allow you to add interest in your photos. If you want your subject to really pop you need to know how to create a shallow DOF. If you want your whole image in focus, like in landscape photography, you will need to create a deeper DOF.

Depth offield photography formula

In fact, if you are shooting with your kit lens this is a great trick to give you a more narrow depth of field when you feel restricted by how wide your aperture can go.

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Aperture, focal length, and distance from your subject. Using a combination of those 3 things you can create exactly what you need.

DOF is a range of distances on either side of the focal plane that are “acceptably sharp.” (“Acceptably sharp” is where the confusion begins.) Another way to state this would be, the area behind and in front of your focus point that is in focus as well.

To be able to explain depth of field we have to start with defining certain terms. Then I will get into describing some things that affect depth of field.

Depth offield examples

I’m not really sure what James (the above commenter) is talking about as he really doesn’t elaborate what he takes issues with in regards to this article.

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One day it just clicked. I’m not sure where or when, but I have a much better grasp on it now. I love using that knowledge to positively impact my own personal art as well as the art I create for my clients.

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Depth offield photography settings

Shallowdepth offield

Read more: Creating Depth in Your ImagesHow Focus Stacking Will Help You Create Shaper Photos11 Composition Rules to Know to Improve your PhotographyWhy a Wide Angle Lens Will Be Your New Favorite Lens

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Knowledge Center/ Application Notes/ Illumination Application Notes/ Successful Light Polarization Techniques

Notice in these next few photos how the subject is in focus but the majority of the rest of the photo is not sharp. This is showing narrow or a shallow depth of field.

As you can see from the example above the 200mm lens really compressed DOF. Even though these images were both shot at the exact same place this lens makes the subject and background seem more pushed together.

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The only thing that confuses me is the area where you talk about sensor sizes where it seems that you may be contradicting your own argument by stating:

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Shallowdepth offield photography

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When you are shooting more wide open (smaller aperture number) less of the photos will be in focus. Then you will have a narrow depth of field where the background is blurred.

Polarizers absorb incident light oscillating in all but one plane - its polarization axis - yielding linear polarization. Another example of polarization is the partial polarization of light reflecting from a plane surface, an effect less dramatic than a polarizer element. Linear polarization of a randomly polarized light source reduces the intensity of the source theoretically by 50%, and in practice closer to 60-65%. Light that passes through two polarizers with orthogonal polarizing axes will be completely attenuated. However, the almost total elimination of hot spots and glare is exactly what makes a polarizer effective in evening out illumination levels within a field.

By considering light as an electromagnetic wave, we realize that in three-dimensional space a wave can oscillate up and down, side to side, or anywhere in between. Incandescent, fluorescent, LED, and many laser light sources are randomly polarized. In other words, the oscillating angle or plane of light from each point on the light source is varying with time. Taken as a time average, therefore, randomly polarized light sources continuously output all angles of polarization.

The below photos were taken with the same settings and same focal length. The only difference is I moved the stool closer to the plant in the second photo.

The distance that is sharp around your focus point. Shallow DOF means not much of your image other than your subject is sharp. Deep DOF means a lot of your image other than your subject is sharp.

If you are struggling to fit everything in the frame is it because you have crop sensor? See here: Everything you Need to Know About Crop Sensor vs Full Frame

If you are anything like me, understanding depth of field (DOF) was one of the biggest hurdles you had to overcome when learning the technical aspects of photography and shooting in manual mode. I would read explanations online, see links to calculators, hear it described as “shallow” or “deep” and couldn’t make sense of it all.

Depth offield photography

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Eliminating Hot Spots: Hot spots are highly reflective areas within a more diffuse reflecting field. Polarizing the light that strikes these reflective areas, and using a crossed polarizer over the lens, effectively eliminates the hot spots, while evenly illuminating the rest of the field.

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Shown are examples of some common polarization of light techniques used in imaging applications. By utilizing a linear polarizer over the light source, the lens, or both, it is possible to eliminate glare from a reflective surface, bring out surface defects or show stress in a transparent object. More detailed information on which type of polarizer is right for your application can be found in our Polarizer Selection Guide.

In the photos below you can see how the focal plane affects how much of the photo is in focus. The first photo all the toys are in focus because they are on the same focal plane.

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Contrast Enhancement: Ring light guides are popular for their even, diffuse illumination. However, glare or reflection of the ring itself may occur. Polarizing the ring output and the lens separately can reduce these effects, and bring out surface details.

I hope after reading this you have a better understanding of depth of field. Now go get your camera out and experiment with DOF.

Depth offield photography aperture

Video and machine vision systems rely on electronic imagers that typically exhibit anywhere from eight-bit to twelve-bit signal-to-noise ratio. Although sufficient for many applications, cameras in this category may be problematic in cases where the field of view includes extremely bright regions or hot spots. Some objects have certain features that are extremely reflective, or objects may be illuminated from an angle that produces intense reflection. Light polarization filters offer solutions to these and other common imaging problems.

I know a lot of people who initially struggle with getting a grasp on aperture and depth of field especially when starting and and you have laid out it nicely in this article.

Stress Evaluation: Stress, or unwanted refractive index variations, causes a rotation in the angle of polarization. Viewing an unstressed clear object between crossed polarizers should yield a completely dark field. However, when stress is present, the localized changes in refractive index actually rotate the angle of polarization to give varying degrees of transmission - even different amounts of transmission for different colors.

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Focal length can affect the depth of field as well since the longer you focal length the more narrow your depth of field is.

You can see in the photos below how when at the same aperture the photo with the wider focal length has less depth of field.

Sensor Size: “I believe this has the least impact on depth of field” and then you state “Changes in DOF depend on whether you use a crop or full frame;”

The next photo only the wolf is in focus. The other toys are on different focal planes. They have been moved to a different focal plane therefor they are not blurry. You can see this more clearly with the turtle, half of the turtle in in focus while the other half is on a different plane.

Hi! wonderful article today. Is there any chance you could post the same pics of your “studly” husband with the 50 mm and 85 mm with the same camera settings, to see the difference? Can you tell I’m an an amateur? LOL