What Is a Laser and What Does LASER Stand For?
Written by
The FABshaping Team
Aesthetics editorial team
The word "laser" is so common that we forget it began as an acronym. In aesthetic medicine, understanding what a laser actually is — and how it differs from other light-based devices — makes it far easier to compare treatments and choose the right one for your skin.
What does LASER stand for?
LASER stands for Light Amplification by Stimulated Emission of Radiation. In plain terms, a laser is a device that produces a very pure, concentrated beam of light by exciting atoms so they release energy as light of a single colour, all travelling in step.
What is a Skin laser
A skin laser is a cosmetic or medical device that emits concentrated, focused beams of light to precisely target specific layers of the skin. It is used to reduce wrinkles, remove scars, even out pigmentation (age spots or birthmarks), and stimulate new collagen for firmer, smoother skin.
How it Works
Lasers target specific components in the skin (like water, melanin, or hemoglobin) known as chromophores. When the laser light hits these targets, it converts into heat, which destroys damaged cells or encourages the body's natural healing response.
There are two primary categories of skin lasers:
Ablative Lasers: These are more aggressive lasers (like CO₂ or Erbium) that vaporize the very top layer of your skin (the epidermis). They are highly effective for deep wrinkles and severe scarring but require a longer recovery time.
Non-Ablative Lasers: These lasers penetrate the skin without removing the surface layer. They gently heat the underlying tissue to stimulate collagen and improve skin tone, requiring very little to no downtime.
Common Applications
Skin lasers treat a wide variety of cosmetic and medical concerns, including:Fine lines and deep wrinklesAcne and surgical scarsAge spots, freckles, and sun-damaged skinVascular lesions (broken capillaries, port-wine stains)Unwanted hairTattoo remova
How lasers work on skin
Aesthetic lasers rely on a principle called selective photothermolysis. Each wavelength is absorbed by a particular target in the skin — called a chromophore — while surrounding tissue is largely spared. The three main chromophores are:
- Melanin (pigment) — targeted to treat sun spots, pigmentation and unwanted hair.
- Haemoglobin (in blood vessels) — targeted to treat redness and broken capillaries.
- Water — targeted to resurface skin and improve texture.
When the target absorbs the laser's light, that energy converts to heat. Depending on the wavelength, pulse and device, that heat can break down pigment, disable a hair follicle, reduce a small vessel or stimulate collagen.
Laser vs IPL — a quick note
Not every light-based device is a true laser. IPL (intense pulsed light) releases a broad spectrum of wavelengths rather than a single one, so it covers a wider area but with less precision. It's a useful tool, but it isn't a laser. Compare IPL here.
Which laser is right for you?
Because each wavelength does a different job, there is no single "best" laser — only the best laser for a specific concern and skin type. The most useful next step is understanding the two broad families every skin laser falls into.
Next: The two primary categories of skin lasers →
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Frequently asked questions
What does LASER stand for?
LASER stands for Light Amplification by Stimulated Emission of Radiation — a device that produces a pure, concentrated beam of light of a single wavelength.
Is IPL a laser?
No. IPL (intense pulsed light) uses a broad spectrum of wavelengths, while a laser emits a single wavelength — so a laser is more precise and targeted.
How do lasers work on skin?
Through selective photothermolysis: a specific wavelength is absorbed by a target in the skin — melanin, haemoglobin or water — and converts to heat to treat the concern.
Related reading
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What Are Examples of Non-Ablative Lasers?
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