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Dichroic Glass | Stone Information, Healing Properties, Uses

Dichroic glass, an assortment of polished iridescent cabochons shimmering in blue, green, gold, and purple

Dichroic glass is a glass that shows a unique display of color changing iridescence depending on the light angle in which you are viewing it from. This material is created through a process of layering thin transparent glass with layers of metal oxides creating the color changing shift displaying a great example of thin-film optics. This incredible glass is used in many different ways, creating unique jewelry, home decor pieces in the form of plates, vases and many other forms of art.

⚡ Quick Answer

Dichroic glass is a man-made material: clear glass coated with dozens of ultra-thin layers of metal oxides that make it shift color depending on the light and viewing angle — an example of thin-film optics. The modern technology grew out of aerospace research on astronaut face plates, though color-shifting glass dates back to 4th-century Rome. Today it is prized for jewelry, home decor, and art. Scroll down for its history, how it is made, and its uses.

Dichroic Glass and Its Aerospace Roots


Modern dichroic glass was explored and utilized by NASA when they began experimenting with treated glass to make astronaut face plates that would block astronauts from being affected by harmful spectrums of light. The metal oxides in the face plates fractured and separated the harmful lightwaves.


The Ancient History of Dichroic Glass

Although dichroic glass was thought to be a more recent creation, we found that this glass material first appeared in a couple pieces of Roman glass from the 4th century and consisted of transparents glass containing colloidal metals such as silver & gold! Though these pieces did not display as vibrant of colors as some dichroic glass pieces today, they displayed beautiful reflective color as certain wavelengths of light passed through them.


A great example of the 4th century dichroic glass is a piece displayed in the British Museum called the Lycurgus cup. This spectacular glass cup has an earthy green color when in normal front-directed light, but when a light is placed inside the glass or behind it, it transforms into a deep orchid purple color! Another fun fact about this is Dichroic glass gets its name from a Greek word meaning “two colors”.


How Dichroic Glass Is Made

In modern day manufacturing of this particular glass art, multiple ultra thin layers of transparent oxides such as titanium, chromium, aluminum, zirconium or magnesium are vaporized by an electron beam in a vacuum chamber. The vapor condenses on the surface of the glass. In the process of fusion, it creates a crystalline structure on the glass. The finished product may have as many as 50 layers of these materials, yet the thickness of the total coating is 30 to 35 millionths of an inch! Once that process is completed a thick layer of clear glass is placed on top to magnify the metal oxide layers and stabilize the piece so it can be used in many different applications.


The Colors of Dichroic Glass

Dichroic glass can reflect many different colors depending on what metal oxides were used in the creation process. You can identify what metal oxides were used just by looking at the colors with the piece. For example: The greens, teals and like colors are usually created by chromium, iron, zirconium or cadmium. While the deep blues and purples are created by oxides of manganese, copper or aluminum.


If dichroic glass's man-made sparkle appeals to you, you may also enjoy our guides to Bismuth, Titanium Coated Minerals, and Blue Goldstone.

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Frequently Asked Questions About Dichroic Glass

Dichroic glass is glass coated with dozens of ultra-thin layers of metal oxides that make it appear to shift color depending on the angle and the lighting. This color-changing effect is a real-world example of thin-film optics, and it is what gives dichroic glass its distinctive iridescent look.
Dichroic glass is man-made, not a naturally occurring stone. Modern dichroic glass grew out of aerospace research — NASA developed coated glass for astronaut face plates to block harmful light — and even the earliest 4th-century Roman examples were manufactured with metals fused into the glass.
Ultra-thin layers of transparent oxides such as titanium, chromium, aluminum, zirconium, or magnesium are vaporized by an electron beam inside a vacuum chamber, where the vapor condenses onto the glass and forms a crystalline structure. A finished piece can have as many as 50 layers, yet the whole coating is only about 30 to 35 millionths of an inch thick, and it is capped with a layer of clear glass to protect and magnify the effect.
Yes. Dichroic glass is very popular in jewelry, where its shifting colors make every piece one of a kind. It is also used for home decor and art objects such as plates, vases, and sculptures.
The color shift comes from thin-film optics. The stacked metal-oxide layers reflect some wavelengths of light and transmit others, so the color you see changes with the viewing and lighting angle. Which colors appear depends on the oxides used — chromium, iron, zirconium, or cadmium tend to produce greens and teals, while manganese, copper, or aluminum produce deep blues and purples.
Dichroic glass is a man-made art material rather than a natural crystal, so it does not carry traditional stone lore. That said, some in the crystal community simply enjoy it for its vibrant, uplifting play of color and like to pair it with natural stones in jewelry and displays.
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