Ångström (Å)

Length unit · SI system

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The ångström is a unit of length equal to one ten-billionth of a metre, or 0.1 nanometres. It takes its name from Anders Jonas Ångström, the Swedish physicist who used it in his 1868 map of the solar spectrum. The symbol is Å, a letter borrowed from the Swedish alphabet.

The ångström survives because it matches the scale of atoms. A hydrogen atom has a radius of about 0.5 Å. A carbon-carbon single bond measures roughly 1.5 Å. Expressing these figures in nanometres produces awkward decimals, so crystallographers, spectroscopists and structural biologists continue to prefer the older unit. Protein structures deposited in public databases are still described by their resolution in ångströms, and a structure resolved to better than 2 Å is considered high quality.

Wavelengths of visible light also fall in a convenient range. Red light sits near 7000 Å and violet near 4000 Å. X-ray wavelengths cluster around 1 Å, which is precisely why X-ray diffraction reveals atomic spacing: the probe and the target are the same size.

The ångström is not part of the International System of Units. The BIPM lists it among units that are accepted for use with SI but discourages new applications, preferring the nanometre or picometre. That guidance has had limited effect in the fields where the unit is entrenched. Semiconductor manufacturing offers a clear illustration. Process nodes were named in nanometres for decades, but as features shrank the industry began quoting gate oxide thicknesses in ångströms, and Intel named a generation of its technology the Angstrom era.

Reading older scientific literature requires care. Before the ångström was tied to the metre it was defined against a specific spectral line of cadmium, and figures published in the early twentieth century may differ slightly from modern values. The International Astronomical Union adopted that spectroscopic definition in 1907, and it stood until the metre itself was redefined against krypton in 1960. The discrepancy is small, but it is real, and it matters when comparing historical spectral measurements against current ones.

Converting is straightforward. One ångström equals 10-10 metres, 0.1 nanometres, or 100 picometres. Ten ångströms make a nanometre.

Ångström conversion table

UnitSymbol1 Ångström equals1 of these equalsConverter
Nanometernm0.1 nm10 ÅÅngströms to Nanometers
Micrometerμm0.0001 μm10000 ÅÅngströms to Micrometers
Millimetermm0.0000001 mm10000000 ÅÅngströms to Millimeters
Centimetercm0.00000001 cm100000000 ÅÅngströms to Centimeters
Decimeterdm0.000000001 dm1000000000 ÅÅngströms to Decimeters
Meterm1 × 10-10 m10000000000 ÅÅngströms to Meters
Decameterdam1 × 10-11 dam100000000000 ÅÅngströms to Decameters
Hectometerhm1 × 10-12 hm1000000000000 ÅÅngströms to Hectometers
Kilometerkm1 × 10-13 km10000000000000 ÅÅngströms to Kilometers
Inchin0.00000000393700787402 in254000000 ÅÅngströms to Inches
Handhh9.84251968504 × 10-10 hh1016000000 ÅÅngströms to Hands
Footft3.28083989501 × 10-10 ft3048000000 ÅÅngströms to Feet
Yardyd1.09361329834 × 10-10 yd9144000000 ÅÅngströms to Yards
Chainch4.9709695379 × 10-12 ch201168000000 ÅÅngströms to Chains
Furlongfur4.9709695379 × 10-13 fur2011680000000 ÅÅngströms to Furlongs
Milemi6.21371192237 × 10-14 mi16093440000000 ÅÅngströms to Miles
Nautical milenmi5.39956803456 × 10-14 nmi18520000000000 ÅÅngströms to Nautical miles
Leaguelea2.07123730746 × 10-14 lea48280320000000 ÅÅngströms to Leagues
Nautical leaguenlea1.79985601152 × 10-14 nlea55560000000000 ÅÅngströms to Nautical leagues
Astronomical unitau6.68458712227 × 10-22 au1.495978707 × 1021 ÅÅngströms to Astronomical units
Light yearly1.05700083402 × 10-26 ly9.46073047258 × 1025 ÅÅngströms to Light years
Parsecpc3.24077928944 × 10-27 pc3.08567758149 × 1026 ÅÅngströms to Parsecs