{
"$type": "site.standard.document",
"bskyPostRef": {
"cid": "bafyreiexe6jng5jw6qi3ynp5h6444hbv3nmmu45zucnek5mguha4bqfqry",
"uri": "at://did:plc:k7h5fn3kdhjpj37pc6yhno2o/app.bsky.feed.post/3mlfqjs3jhko2"
},
"coverImage": {
"$type": "blob",
"ref": {
"$link": "bafkreidwvlld2bs6alhqtnw443jyvtjbauyxtc6bru3nrg3wby4hslwpz4"
},
"mimeType": "image/jpeg",
"size": 129892
},
"path": "/article/us-neutrino-megaproject-takes-shape-in-abandoned-gold-mine/",
"publishedAt": "2026-05-08T15:38:00.000Z",
"site": "https://www.scientificamerican.com",
"textContent": "The Deep Underground Neutrino Experiment will study nature’s most mysterious particle a mile beneath South Dakota’s Black Hills and will potentially reveal the origins of matter",
"title": "U.S. neutrino megaproject takes shape in abandoned gold mine"
}