Physics:Quantum atoms/isotopes of hydrogen: Difference between revisions

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{{Short description|Hydrogen isotopes and their quantum relevance}}
{{Short description|Hydrogen isotopes and their quantum relevance}}
{{Quantum matter backlink|Atoms}}
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The nuclear spin also affects hyperfine splitting. Ordinary hydrogen and deuterium have different nuclear spin values, so their hyperfine spectra differ. Tritium is radioactive, but it is still useful in nuclear and atomic physics contexts.
The nuclear spin also affects hyperfine splitting. Ordinary hydrogen and deuterium have different nuclear spin values, so their hyperfine spectra differ. Tritium is radioactive, but it is still useful in nuclear and atomic physics contexts.


== Related pages ==
== See also ==
* [[Physics:Quantum atoms/hydrogen]]
* [[Physics:Quantum atoms/hydrogen]]
* [[Physics:Quantum atoms/energy level]]
* [[Physics:Quantum atoms/energy level]]

Revision as of 21:53, 23 May 2026



Hydrogen isotopes are atoms with one proton in the nucleus and different numbers of neutrons. The three named isotopes are protium (1H), deuterium (2H or D), and tritium (3H or T).

Hydrogen isotopes are important in atomic physics because the nucleus affects the reduced mass, hyperfine structure, isotope shifts, and precision spectroscopy of hydrogen-like systems.

The three commonly discussed isotopes of hydrogen: protium, deuterium, and tritium.

Main isotopes

Isotope Symbol Nucleus Stability Notes
Protium 1H one proton stable Most common hydrogen isotope; no neutron.
Deuterium 2H or D one proton and one neutron stable Used in heavy water, isotope labeling, and precision spectroscopy.
Tritium 3H or T one proton and two neutrons radioactive Beta emitter with a half-life of about 12.3 years; used in tracing and fusion research.

Quantum effects

Different hydrogen isotopes have slightly different atomic energy levels because the nuclear mass changes the reduced mass of the electron-nucleus system. These isotope shifts are measured in high-precision spectroscopy.

The nuclear spin also affects hyperfine splitting. Ordinary hydrogen and deuterium have different nuclear spin values, so their hyperfine spectra differ. Tritium is radioactive, but it is still useful in nuclear and atomic physics contexts.

See also

References


Author: Harold Foppele