Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-07-11T17:26:24.553591Z
Paper Citation Record · LEDGER
As of 7 August 2026, this Paper Citation Record lists 47 of 47 outbound references and 0 inbound Pith citation observations for arXiv:2607.04553.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-07-11T17:26:24.553591Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-07T06:34:17.273281+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
47 of 47 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 419520a4-6456-45c0-8444-5d276abe1858 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption GPT-4 technical report, 2024
Reference 1
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Observation 43f29af4-83ad-4b41-a242-a573640db47f · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Conditional variational autoencoder with adversar- ial learning for end-to-end text-to-speech
Reference 2
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Observation 8699a808-f8e7-4058-acaa-c0cf0a29b7bf · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption High- resolution image synthesis with latent diffusion models
Reference 3
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Observation d18103ca-0b6f-40b4-9588-c7830baefc56 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption The ai gambit: leveraging artificial intelligence to combat climate change—opportunities, challenges, and recommendations.Ai & Society, 38(1):283–307, 2023
Reference 4
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Observation 625d5ee7-1c59-4600-b27b-c1db2dff92ef · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Energy and policy considerations for deep learning in nlp
Reference 5
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Observation 8db4eb5a-1027-4147-a215-c553faeeeec9 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Estimating the Carbon Footprint of BLOOM, a 176B Parameter Language Model
Reference 6
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Observation 00b67796-1d1f-49f9-abfb-65b9b1e2ab04 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Energy Considerations of Large Language Model Inference and Efficiency Optimizations
Reference 7
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Observation 3bd8c1dc-a4ad-4dff-8018-ec4998b7570a · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Evaluating the environmental impact of language models with life cycle assessment
Reference 8
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Observation 291e602d-1ddd-4509-b5fc-077cb29010b1 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Holistically Evaluating the Environmental Impact of Creating Language Models
Reference 9
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Observation 45212c47-13a3-4eae-bad7-6e4775e5fcd1 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Benchmarking Energy Efficiency of Large Language Models Using vLLM
Reference 10
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Observation 7c1893ee-e919-4405-9949-81dd7cc3e12f · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption How hungry is ai? benchmarking energy, water, and carbon footprint of llm inference
Reference 11
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Observation fdd354c8-35b2-4a66-9b27-eb1301249a2c · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Power hungry processing: Watts driving the cost of ai deployment? InThe 2024 ACM Conference on Fairness Accountability and Transparency, FAccT ’24, page 85–99
Reference 12
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Observation 68049251-0410-429f-9657-4c23772d6612 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Talk is cheap, energy is not: Towards a green, context-aware metrics framework for automatic speech recognition
Reference 13
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Observation 40dd26f3-0f52-4797-8891-50a8271cdc12 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Carbon in motion: Characterizing open-sora on the sustainability of generative ai for video generation.ACM SIGENERGY Energy Informatics Review, 4(5):160–165, 2024
Reference 14
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Observation b1fe208e-e82b-4417-b38a-39336aa8a22c · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Video killed the energy budget: Characterizing the latency and power regimes of open text-to-video models.arXiv preprint arXiv:2509.19222, 2025
Reference 15
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Observation 969d9637-9178-4fe8-a5ff-c237d0d2097c · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption HunyuanVideo: A Systematic Framework For Large Video Generative Models
Reference 16
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Observation a4d4e6c0-653e-48f8-857b-f32d62ec47db · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Mind the memory gap: Unveiling gpu bottlenecks in large-batch llm inference
Reference 17
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Observation 9e2527ef-14a2-49ac-8c64-9d67a6bc351b · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Eliminating vae for fast and high-resolution generative detail restoration.arXiv preprint arXiv:2602.10630, 2026
Reference 18
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Observation 8eca33af-db2b-4d2a-873a-741722f32d4f · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption LTX-2: Efficient Joint Audio-Visual Foundation Model
Reference 19
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Observation 501fcec4-6f7f-4854-af8b-af2e4d0522c3 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Artificial analysis.https://artificialanalysis.ai, 2026
Reference 20
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Observation cf978905-821e-43f5-933e-e8fd108fd4c5 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Hunyuanvideo
Reference 21
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Observation 7617f67b-4472-458b-a377-937c8b3e2655 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Hunyuanvideo-1.5
Reference 22
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Observation db1e4a74-04e7-4538-a79a-a2232d201e51 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Unresolved cited work
Reference 23
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Observation 6a8f62d3-6fab-4d45-94a7-e3b23591859e · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Unresolved cited work
Reference 24
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Observation 3e95ca69-0708-4863-968f-30c8e115f652 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Unresolved cited work
Reference 25
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Observation a64e4e39-8bd7-4dc3-9408-95fa4ae5f98e · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Energyusecalculator, 2026
Reference 26
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Observation 25da1298-6386-4015-970d-c1197259457f · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Measuring the environmental impact of delivering AI at Google Scale
Reference 27
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Observation 5bc3ed3d-8092-43e4-b892-940c6439f9a5 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Google’s ai filmmaker program, flow, helped creators make 100 million videos, 2025
Reference 28
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Observation bc54eed1-c113-49bb-a1a7-f6ed4022b2a1 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Energy Information Administration
Reference 29
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Observation c658a838-60bd-45bc-8c12-950099c03781 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Electricity maps
Reference 30
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Observation b7f674aa-d3f6-40f6-a920-b03c3eed03ed · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Greenhouse gas emissions from a typi- cal passenger vehicle
Reference 31
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Observation 0efa5e6a-eb1c-4f4e-9f7b-b7be0635e344 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Fish-Speech: Leveraging Large Language Models for Advanced Multilingual Text-to-Speech Synthesis
Reference 32
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Observation 5a8c1af1-baf3-4519-a750-22c6edaa4353 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption V oxtral-4b-tts-2603
Reference 33
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Observation 740d06be-a65a-4d22-aaba-63670a65a829 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Video generation models as world simulators
Reference 34
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Observation 13a2e97c-fd1f-4812-9dda-c403e164ebb9 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Veo: a text-to-video generation system
Reference 35
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Observation 87f3937d-2a50-4098-baf6-5586831feafa · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Life-Cycle Emissions of AI Hardware: A Cradle-To-Grave Approach and Generational Trends
Reference 36
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Observation 268c1ad9-0c01-4432-9a3e-89f623e9116b · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption The real reason openai shut sora down is a warning to every ai startup
Reference 37
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Observation 2b2705d3-8979-4cc4-8ed9-9ade5e771888 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Here’s how much cash OpenAI is burning on AI video app Sora
Reference 38
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Observation 14210869-9d46-46ac-b713-21644cadd7f0 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Meta unveils new ai video feed vibes, 2025
Reference 39
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Observation 7517e920-df99-4c8e-aa9b-a7412e3e02f4 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Openai launches sora social media app for ai-generated videos, raising ’ai slop’ and copyright worries, 2025
Reference 40
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Observation 9e30c9b1-8013-49c1-912c-e3f26b9d8c9f · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption This 27-year-old’s tiktok-like ai app makes playful, creative short videos from just a few words—it’s built for gen z, 2025
Reference 41
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Observation 8bf266f6-0e62-403c-a78e-baf8f5e4edfc · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Coca-cola’s new ai holiday ad is a sloppy eyesore, 2025
Reference 42
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Observation b300aa35-1f4f-4789-b4e7-b757e1123c97 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Nvidia has not yet sold its H200 AI chips to China, Lutnick says
Reference 43
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Observation 1c993317-55db-405e-99a6-7032d24720b2 · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Frontier video foundation model: Veo
Reference 44
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Observation f14ab85a-39b9-4cb5-9a2f-c9131d47648c · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Seedance 1.0: Exploring the Boundaries of Video Generation Models
Reference 45
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Observation 021d2e3d-5a4d-41b0-87cd-2a0a5445883d · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Seedance 1.5 pro api – 1080p cinematic video with native audio
Reference 46
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Observation 70cd4c2d-5271-40ed-a389-08e848880cfb · outbound
Lights, Camera, Carbon: Architectural Scaling Laws for Video Generation Energy Consumption Kling 3.0 pro vs
Reference 47
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No inbound Pith citation observations are available.