{"@context":"https://neupai.io/schema/v0.2","@type":"StructuredNewsArticle","identity":{"article_id":"samsung-news_20260423_2d-3d-display-metasurface","canonical_url":"https://news.samsung.com/kr/%ec%82%bc%ec%84%b1%ec%a0%84%ec%9e%90%c2%b7%ed%8f%ac%ec%8a%a4%ed%85%8d-2d%c2%b73d-%ec%9e%90%ec%9c%a0%ec%9e%90%ec%9e%ac%eb%a1%9c-%eb%84%98%eb%82%98%eb%93%9c%eb%8a%94-%eb%94%94%ec%8a%a4%ed%94%8c","ai_url":null,"publisher":{"name":"삼성전자 뉴스룸","domain":"news.samsung.com","type":"online"},"author":"삼성전자 뉴스룸","published_at":"2026-04-23T00:00:00.000Z","updated_at":null,"language":"ko","article_type":"press_release_based","originality":"self_produced"},"content":{"headline":"삼성전자·포스텍, 2D·3D 자유자재로 넘나드는 디스플레이 개발… 연구 논문 '네이처'에 게재","summary":"삼성전자가 포스텍과 공동으로 개발한 메타표면 렌티큘러 렌즈 기반 2D·3D 전환 디스플레이 연구 논문이 세계적 권위지 네이처에 게재됐다. 1.2mm 초박막 렌즈로 3D 시야각을 기존 15도에서 100도로 확장하는 혁신을 이뤘다.","topics":["기술","디스플레이","나노기술","광학기술","학술연구"],"geography":["KR"],"entities":[{"name":"삼성전자","canonical_id":"corp:kr:samsung-electronics","type":"company","role_in_article":"primary_subject","metadata":{"ticker":null,"parent":null}},{"name":"포스텍","canonical_id":"org:kr:postech","type":"organization","role_in_article":"mentioned","metadata":{"ticker":null,"parent":null}},{"name":"네이처","canonical_id":"org:uk:nature","type":"organization","role_in_article":"mentioned","metadata":{"ticker":null,"parent":null}},{"name":"삼성리서치","canonical_id":"org:kr:samsung-research","type":"organization","role_in_article":"mentioned","metadata":{"ticker":null,"parent":null}}],"claims":[{"id":"c1","statement":"삼성전자가 포스텍과 산학협력으로 진행한 '메타표면 렌티큘러 렌즈 기반 2D·3D 전환 디스플레이' 연구 논문이 세계적인 최고 권위 학술지 '네이처(Nature)'에 게재됐다","as_of":"2026-04","as_of_explicit":false,"as_of_raw":"2026년 4월","source_type":"company_disclosure","comparison":null,"type":"fact","figures":null,"expiry_hint":null,"insight":null},{"id":"c2","statement":"기존 라이트 필드 디스플레이는 3D 시야각이 15도 정도로 좁았다","as_of":"2026-04","as_of_explicit":false,"as_of_raw":"기존","source_type":"research_paper","comparison":null,"type":"fact","figures":null,"expiry_hint":null,"insight":null},{"id":"c3","statement":"연구팀이 개발한 메타표면 렌티큘러 렌즈는 단 1.2밀리미터(mm)의 얇은 두께를 유지한다","as_of":"2026-04","as_of_explicit":false,"as_of_raw":"2026년 4월","source_type":"research_paper","comparison":null,"type":"fact","figures":null,"expiry_hint":null,"insight":null},{"id":"c4","statement":"메타표면 렌티큘러 렌즈는 무려 100도에 달하는 초광시야각을 제공한다","as_of":"2026-04","as_of_explicit":false,"as_of_raw":"2026년 4월","source_type":"research_paper","comparison":null,"type":"fact","figures":null,"expiry_hint":null,"insight":null},{"id":"c5","statement":"기존 15도에서 무려 6배 이상 확장시켰다","as_of":"2026-04","as_of_explicit":false,"as_of_raw":"기존","source_type":"research_paper","comparison":"previous_technology","type":"fact","figures":null,"expiry_hint":null,"insight":null},{"id":"c6","statement":"연구팀은 가로세로 50mm, 즉 25cm² 넓이의 대면적 메타렌즈를 성공적으로 제작했다","as_of":"2026-04","as_of_explicit":false,"as_of_raw":"2026년 4월","source_type":"research_paper","comparison":null,"type":"fact","figures":null,"expiry_hint":null,"insight":null}],"ai_emotional_context":{"valence":0,"arousal":0,"primary_emotions":[],"secondary_emotions":[],"emotional_triggers":[]}},"provenance":{"source_chain":["primary_reporting"],"original_source_url":null,"related_articles":[]},"temporal":{"freshness":"recent","next_update_expected":null},"access":{"license":"neupai_standard","attribution_required":true,"structured_data":"free","full_text_available":false,"full_text_access":null}}