Antimatter hunt advances with UH ²Ñ¨¡²Ô´Ç²¹ work at CERN
Understanding antimatter particles helps us learn how the universe was formed and why it behaves the way it does today.
Understanding antimatter particles helps us learn how the universe was formed and why it behaves the way it does today.
UH Mānoa researchers study how black holes may turn dead stars into dark energy, helping explain the universe¡¯s faster expansion.
Unlike conventional lasers, the FEL produces tunable light (light that can be adjusted to different colors or energies) by accelerating electrons through alternating magnetic fields.
Dark matter is an invisible substance that makes up about a quarter of the universe¡¯s total matter.
New data hint that dark energy, the force accelerating the universe, might be evolving.
The Frontiers of Science Award honors research of exceptional originality, scientific value and lasting impact.
The lecture offered insight into how researchers use underground laboratories to study neutrinos.
UH Hilo senior Jeffrey Kromer earned a NASA grant to present his Mars dune research in Italy.
A new endowment honoring Jean Takamura celebrates the contributions of UH ²Ñ¨¡²Ô´Ç²¹¡¯s support staff through the inaugural staff excellence award.
UH ²Ñ¨¡²Ô´Ç²¹ researchers are using two innovative approaches to advance the search for ice on the Moon.