Observation of positronium diffraction

Y Yugo Nagata R Riki Mikami N Nazrene Zafar Y Yasuyuki Nagashima

Abstract

Abstract Diffraction of matter waves is a fundamental consequence of quantum mechanics, directly illustrating the core principles of wave-particle duality, quantum superposition, and quantum interference. De Broglie’s proposal that particles exhibit wave-like properties has been experimentally confirmed for electrons, neutrons, and composite systems such as helium atoms, molecules and clusters. Here, we report the observation of positronium diffraction using a high-quality, energy-tunable positronium beam transmitted through graphene. Time-of-flight selection and spatially resolved detection reveal a distinct 1st-order diffraction peak at a position consistent with the prediction from matter-wave considerations for positronium. This work provides the direct and definitive evidence of quantum interference in positronium beams and confirms that it behaves as a single quantum entity rather than two independent interfering particles. This groundbreaking experimental milestone marks a major advance in fundamental physics, not only demonstrating positronium’s wave nature as a bound lepton-antilepton system but also opening pathways for precision measurements involving positronium.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 23, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (4)

Y

Yugo Nagata

R

Riki Mikami

N

Nazrene Zafar

Y

Yasuyuki Nagashima