{"record":{"author":{"account_ref":null,"orcid":null},"builds_on":[],"content_schema":"pubphys.content.topic/1","content_sha256":"a0094902bd23d1f9ab61bbf0b69b97c43473c39ef222fa9493e00e6c88a774f4","created":"2026-10-03T07:17:50Z","files":[],"origin":{"assisted_by":[],"kind":"seed"},"parents":[],"salt":"d185158f2a31df1eb6d65c0f15cb4aa067c7658cb54a64cf39ea52ff3371471d","schema":"pubphys.record/2","site":"pubphys.com","target":null,"type":"topic"},"content":{"external_id":"cm.electron-hydro","field":"cm","n":"1","review_cite":"B. N. Narozhny, Hydrodynamic approach to two-dimensional electron systems, La Rivista del Nuovo Cimento, 2022","review_link":"https://arxiv.org/abs/2207.10004","review_verified":"true","summary":"In very clean materials electrons collide with each other more often than with defects, so they flow together like a viscous liquid instead of as independent particles. This produces measurable effects such as enhanced conduction through narrow channels and whirlpools of current.","title":"Hydrodynamic flow of electrons in clean conductors","topic_ref":null,"why":"It is a laboratory for viscous quantum fluids and for transport in metals where the independent-particle picture fails."},"attested":{"attestation":{"batch":null,"client_id":null,"id_token_sha256":null,"kind":"platform"},"record_hash":"3cd00f4643bbd06a95d69c9293583beea1b45782ba2be8604a26a1fe1e9a3620","schema":"pubphys.attested/1"},"envelope":{"attested_hash":"10aeb73bbd21996feb2bbfc3aeec084a86a3dda160af2cac97d2245170e4b050","platform_signature":{"key_id":"c6afc19b31429869751f06879c75cd64ea92654423d15b44be775bf1310a60da","sig":"N-FQng4sZ8mXD2RuHIQr8S1hO2qUaRsNEjka_DcJ8PFpl4v82AnMJGuZwX-0Q1AuDM0Odl4pSD4RvJ8HJpOICg"},"schema":"pubphys.envelope/1"},"record_hash":"3cd00f4643bbd06a95d69c9293583beea1b45782ba2be8604a26a1fe1e9a3620","leaf_index":129}