{"$schema": "https://iptc.org/std/ninjs/ninjs-schema_3.2.json", "uri": "urn:newsml:wireva.mib.news:item:836b21ed-a3e7-4b33-bac0-053daa6398b5", "type": "text", "profile": "standard", "version": "1", "versioncreated": "2026-08-21T19:59:36.772115Z", "firstcreated": "2026-07-22T22:00:49.253453Z", "pubstatus": "usable", "urgency": 5, "language": "en", "headline": "Solar Energetic Particles May Warm Mars' Lower Atmosphere During Dust Storms", "byline": "Kelsey Sawyer", "located": "United States", "copyrightholder": "Haydamax OÜ", "copyrightnotice": "Wireva / Science Official", "usageterms": "Subscribers may republish this item in full, including translation and trimming, with the credit “Wireva / Science Official”. Set rel=canonical to https://scienceofficial.org/science/solar-energetic-particles-may-warm-mars-lower-atmosphere-during-dust-storms/ when publishing on the web.", "description_text": "Planetary researchers have found the first evidence that bursts of energetic particles from the Sun could warm the lower atmosphere of Mars during massive dust storms, hinting at an unexpected link between space weather and Martian climate.", "altids": {"mosaic": "836b21ed-a3e7-4b33-bac0-053daa6398b5", "story": "408b0792-bf30-4487-b7ee-7ec642813d8c", "slug": "solar-energetic-particles-may-warm-mars-lower-atmosphere-during-dust-storms"}, "subject": [{"name": "Science", "rel": "direct", "literal": "science", "code": "medtop:13000000", "scheme": "http://cv.iptc.org/newscodes/mediatopic/", "uri": "http://cv.iptc.org/newscodes/mediatopic/13000000"}], "place": [{"name": "United States", "literal": "us", "code": "US", "scheme": "http://cv.iptc.org/newscodes/countrycodes/"}], "person": [], "organisation": [], "genre": [{"name": "Standard story", "literal": "standard"}], "service": [{"name": "Wireva", "literal": "wireva"}], "associations": {"featuremedia": {"uri": "urn:newsml:wireva.mib.news:media:c3f88826-1bf1-4d22-829d-75a5eae5757a", "type": "picture", "version": "1", "pubstatus": "usable", "headline": "The strategic competition with China: winning the multi-domain race", "description_text": "Solar Energetic Particles May Warm Mars' Lower Atmosphere During Dust Storms", "copyrightholder": "spacenews.com", "copyrightnotice": "The strategic competition with China: winning the multi-domain race", "usageterms": "Picture belongs to the source publication: address and terms are delivered, the file is not.", "altids": {"wireva": "c3f88826-1bf1-4d22-829d-75a5eae5757a"}, "extra": {"wireva:delivery_mode": "link_only", "wireva:rights": {"licence": "", "licence_url": "", "licence_raw": "Related RSS source", "licence_verified_at": "2026-08-21T19:59:36.782686Z", "attribution_required": true, "attribution_text": "The strategic competition with China: winning the multi-domain race", "redistribution_allowed": false, "commercial_use_allowed": false, "modifications_allowed": false, "share_alike_required": false}, "wireva:provenance": {"creator": "", "source_name": "spacenews.com", "source_url": "https://spacenews.com/the-strategic-competition-with-china-winning-the-multi-domain-race/", "source_page_url": "https://spacenews.com/the-strategic-competition-with-china-winning-the-multi-domain-race/", "our_page_url": "https://scienceofficial.org/science/solar-energetic-particles-may-warm-mars-lower-atmosphere-during-dust-storms/"}, "wireva:role": "lead"}, "renditions": {"source": {"href": "https://spacenews.com/the-strategic-competition-with-china-winning-the-multi-domain-race/", "mimetype": "image/jpeg"}}}}, "extra": {"wireva:story": {"uri": "urn:newsml:wireva.mib.news:story:408b0792-bf30-4487-b7ee-7ec642813d8c", "slug": "solar-energetic-particles-may-warm-mars-lower-atmosphere-during-dust-storms-20260722", "status": "closed", "languages": ["en"], "item_count": 1, "is_breaking": false}, "wireva:rights": {"class": "agency_original", "redistribution_allowed": true, "commercial_use_allowed": true, "modifications_allowed": true, "share_alike_required": false, "attribution_required": true, "attribution_text": "Wireva / Science Official", "canonical_required": true, "canonical_url": "https://scienceofficial.org/science/solar-energetic-particles-may-warm-mars-lower-atmosphere-during-dust-storms/", "linkback_required": true, "licence": "Wireva subscriber licence", "licence_url": "", "licensor": "Haydamax OÜ", "valid_until": null, "excerpt_max_chars": 0, "decided_by_rule": "agency_original_unassessed_allow", "needs_review": true}, "wireva:provenance": {"production_method": "automated", "ai_stages": {}, "model": "", "human_reviewed": false, "reviewed_by": "", "reviewed_at": null, "editorial_control": true, "editorial_responsibility": "Haydamax OÜ (Wireva)", "factchecked": false, "verification_status": "multi_source", "independent_confirmations": 2, "official_source_used": false, "used_press_release": false, "public_interest": false, "ai_disclosure_required": false, "ai_disclosure_text": "", "independence_check": {"status": "not_assessed", "score": 0.0, "checked_at": "2026-08-21T19:59:36.780586Z"}}, "wireva:publication": {"name": "Science Official", "domain": "scienceofficial.org", "country": "US", "url": "https://scienceofficial.org/science/solar-energetic-particles-may-warm-mars-lower-atmosphere-during-dust-storms/"}, "wireva:links": {"self": "https://wireva.mib.news/api/v1/items/836b21ed-a3e7-4b33-bac0-053daa6398b5", "html": "https://wireva.mib.news/item/836b21ed-a3e7-4b33-bac0-053daa6398b5/solar-energetic-particles-may-warm-mars-lower-atmosphere-during-dust-storms/", "story": "https://wireva.mib.news/story/solar-energetic-particles-may-warm-mars-lower-atmosphere-during-dust-storms-20260722/"}, "wireva:metrics": {"word_count": 661, "char_count": 4530, "reading_time_seconds": 324}}}