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IonQ and the University of Washington Simulate Process Linked To The Universe's Matter-Antimatter Imbalance

1. IONQ announced the first simulation of neutrinoless double-beta decay using quantum computing. 2. This breakthrough could reshape our understanding of matter-antimatter imbalance.

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Why Bullish?

This announcement highlights IONQ's leadership in quantum computing, which may attract investors. Historically, breakthroughs in quantum applications have led to increased stock interest and market momentum.

How important is it?

The direct link to a significant scientific breakthrough positions IONQ favorably in the market. As quantum computing matures, pioneering research like this increases IONQ's competitive edge and attractiveness to investors.

Why Long Term?

The implications of this discovery could enhance IONQ's value proposition over time. Similar milestones in technology typically yield sustained interest and funding, as seen with previous technological innovations.

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COLLEGE PARK, Md.--(BUSINESS WIRE)--IonQ (NYSE: IONQ), a leading commercial quantum computing and networking company, today announced the first known simulation using a quantum computer of a process called “neutrinoless double-beta decay” with profound implications for understanding the universe's imbalance between matter and antimatter. The Big Bang should have made equal amounts of matter and antimatter. However, almost everything we see is made of matter, and there's very little antimatter a.

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