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Paper Citation Record · LEDGER

Breaking the Statistical Similarity Trap in Extreme Convection Detection

As of 19 August 2026, this Paper Citation Record lists 70 of 70 outbound references and 0 inbound Pith citation observations for arXiv:2509.09195.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2509.09195 v2

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measured 70 of 70 reference resolution

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Outbound references

Observation 1f06196d-f77c-4d58-a244-c755f57e17f9 · outbound

This paper cites Nature619(7970), 533–538 (2023) https://doi.org/10.1038/s41586-023-06185-3.

Breaking the Statistical Similarity Trap in Extreme Convection Detection Nature619(7970), 533–538 (2023) https://doi.org/10.1038/s41586-023-06185-3

Reference 1

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This paper cites Science382(6677), 1416–1421 (2023) 37.

Breaking the Statistical Similarity Trap in Extreme Convection Detection Science382(6677), 1416–1421 (2023) 37

Reference 2

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This paper cites FourCastNet: A Global Data-driven High-resolution Weather Model using Adaptive Fourier Neural Operators.

Breaking the Statistical Similarity Trap in Extreme Convection Detection FourCastNet: A Global Data-driven High-resolution Weather Model using Adaptive Fourier Neural Operators

Reference 3

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This paper cites Quarterly Journal of the Royal Meteorological Society146(730), 1999– 2049 (2020) https://doi.org/10.1002/qj.3803.

Breaking the Statistical Similarity Trap in Extreme Convection Detection Quarterly Journal of the Royal Meteorological Society146(730), 1999– 2049 (2020) https://doi.org/10.1002/qj.3803

Reference 4

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Observation b943a8ab-4109-49f8-b40e-76a896dd6f99 · outbound

This paper cites Technical Report ERL ESG-15, Environmental Research Laboratories, Boulder, CO (1985).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Technical Report ERL ESG-15, Environmental Research Laboratories, Boulder, CO (1985)

Reference 5

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This paper cites Geophysical Research Letters48(6), 2020–092261 (2021).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Geophysical Research Letters48(6), 2020–092261 (2021)

Reference 6

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Observation 3c1cf01c-0888-4cfb-9e43-7fcde90bd679 · outbound

This paper cites The Penn- sylvania State University.

Breaking the Statistical Similarity Trap in Extreme Convection Detection The Penn- sylvania State University

Reference 7

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Observation d5c6caa0-8caa-489f-917f-2b8bf2ebe267 · outbound

This paper cites World Meteorological Organization.

Breaking the Statistical Similarity Trap in Extreme Convection Detection World Meteorological Organization

Reference 8

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This paper cites World Meteorological Organization.

Breaking the Statistical Similarity Trap in Extreme Convection Detection World Meteorological Organization

Reference 9

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This paper cites European Centre for Medium-Range Weather Forecasts.

Breaking the Statistical Similarity Trap in Extreme Convection Detection European Centre for Medium-Range Weather Forecasts

Reference 10

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This paper cites Journal of Hydrometeorology19, 409–423 (2018) https://doi.org/10.1175/JHM-D-17-0135.1.

Breaking the Statistical Similarity Trap in Extreme Convection Detection Journal of Hydrometeorology19, 409–423 (2018) https://doi.org/10.1175/JHM-D-17-0135.1

Reference 11

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Observation 8e9afc32-f829-44c4-84f9-42309ba24ef8 · outbound

This paper cites Natural Hazards and Earth System Sciences21(6), 1807–1823 (2021).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Natural Hazards and Earth System Sciences21(6), 1807–1823 (2021)

Reference 12

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Observation a3756d93-9f6c-4032-accc-856c24e501ba · outbound

This paper cites LSE Grantham Research Institute on Climate Change and 38 the Environment (2023).

Breaking the Statistical Similarity Trap in Extreme Convection Detection LSE Grantham Research Institute on Climate Change and 38 the Environment (2023)

Reference 13

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This paper cites Natural Hazards and Earth System Sciences 22(3), 729–751 (2022).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Natural Hazards and Earth System Sciences 22(3), 729–751 (2022)

Reference 14

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Observation a65c8f39-764b-4d69-8811-e54762fc4364 · outbound

This paper cites Artificial Intelligence for the Earth Systems4(1), 240033 (2025).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Artificial Intelligence for the Earth Systems4(1), 240033 (2025)

Reference 15

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Observation 1b7b1914-1839-401a-a3a9-a9e30ccbd009 · outbound

This paper cites ACE Metric: Advection and Convection Evaluation for Accurate Weather Forecasting.

Breaking the Statistical Similarity Trap in Extreme Convection Detection ACE Metric: Advection and Convection Evaluation for Accurate Weather Forecasting

Reference 16

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Observation 7cc2305f-9646-408c-a4d1-b55e247c7f83 · outbound

This paper cites Technical Report WMO/TD-No.

Breaking the Statistical Similarity Trap in Extreme Convection Detection Technical Report WMO/TD-No

Reference 17

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Observation e61dbd18-644b-4988-9116-7a08ff96e542 · outbound

This paper cites Earth Interactions15(28), 1–25 (2011).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Earth Interactions15(28), 1–25 (2011)

Reference 18

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Meteorologische Zeitschrift21(1), 1–7 (1904)

Reference 19

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Unresolved cited work

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Breaking the Statistical Similarity Trap in Extreme Convection Detection part ii: Daily pre- cipitation

Reference 21

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This paper cites Scientific Reports14(1), 17748 (2024).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Scientific Reports14(1), 17748 (2024)

Reference 22

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Atmosphere 14(4), 708 (2023)

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Breaking the Statistical Similarity Trap in Extreme Convection Detection CoRR (2024) 39

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This paper cites Advances in Neural Information Processing Systems37, 68740–68771 (2024).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Advances in Neural Information Processing Systems37, 68740–68771 (2024)

Reference 25

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Communications Earth & Envi- ronment1(1), 39 (2020)

Reference 26

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Geophysical Research Letters51(2), 2023–106602 (2024)

Reference 27

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Breaking the Statistical Similarity Trap in Extreme Convection Detection ACM computing surveys (CSUR)49(2), 1–50 (2016)

Reference 28

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Artificial Intelligence Review 57(6), 137 (2024)

Reference 29

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Breaking the Statistical Similarity Trap in Extreme Convection Detection In: First International Workshop on Learning with Imbalanced Domains: Theory and Applications, pp

Reference 30

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Breaking the Statistical Similarity Trap in Extreme Convection Detection In: ECAI, vol

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Advances in Neural Information Processing Systems31(2018)

Reference 32

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Unresolved cited work

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Journal of Advances in Modeling Earth Systems16(6), 2023–004019 (2024)

Reference 34

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Quarterly Journal of the Royal Meteorological Society 150(760), 1267–1287 (2024)

Reference 35

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This paper cites International Journal of Climatology38(2), 1010–1021 (2018) 40.

Breaking the Statistical Similarity Trap in Extreme Convection Detection International Journal of Climatology38(2), 1010–1021 (2018) 40

Reference 36

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Natural Hazards28, 35–64 (2003) https://doi.org/10.1023/A: 1021169731325

Reference 37

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Observation 4dc7a5ec-db84-40c2-931b-3865ef6da48a · outbound

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Accessed: 2025-09-07

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Observation b21c93dd-fe6f-499f-8a87-a40b50e027cc · outbound

This paper cites EBSCO Research Starters.

Breaking the Statistical Similarity Trap in Extreme Convection Detection EBSCO Research Starters

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Observation 8fb333d3-6bc7-4a1b-ad40-52844cf90524 · outbound

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Monthly Weather Review149(12), 3897–3921 (2021)

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Observation 6fc6490d-a289-4d25-986f-ab6293a9f11f · outbound

This paper cites Atmosphere15(3), 243 (2024).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Atmosphere15(3), 243 (2024)

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Observation 6ba092c6-7a2f-477e-9b42-3080bd76f03a · outbound

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Breaking the Statistical Similarity Trap in Extreme Convection Detection Environmental Data Science2, 31 (2023)

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Observation 4a4b6527-3f8f-408a-ae12-43d22a0fe135 · outbound

This paper cites Journal of Geophysical Research: Atmospheres120(24), 12514–12535 (2015).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Journal of Geophysical Research: Atmospheres120(24), 12514–12535 (2015)

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Observation be615fca-2f4a-4969-b21a-195ad4b5a5c9 · outbound

This paper cites Weather and Forecasting28(6), 1337–1352 (2013).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Weather and Forecasting28(6), 1337–1352 (2013)

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Observation 716df252-2a56-42f0-bd80-e1adbca7f9d3 · outbound

This paper cites Journal of Geophysical Research: Atmospheres130(17), 2025–043896 (2025).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Journal of Geophysical Research: Atmospheres130(17), 2025–043896 (2025)

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Observation c5a5d9f1-4e82-4038-a17a-5b68cf1d1a51 · outbound

This paper cites https://doi.

Breaking the Statistical Similarity Trap in Extreme Convection Detection https://doi

Reference 46

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Observation 8b1ff20f-3694-47cd-a736-5bd51de64e89 · outbound

This paper cites Bulletin of the American Meteorological Society100(2), 269–289 (2019).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Bulletin of the American Meteorological Society100(2), 269–289 (2019)

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Observation 03bc32f9-1a5e-49fa-8b4a-a9fdbb4f04ae · outbound

This paper cites Weather and forecasting11(4), 560–581 (1996) 41.

Breaking the Statistical Similarity Trap in Extreme Convection Detection Weather and forecasting11(4), 560–581 (1996) 41

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Observation f24ae22c-85c6-4e4f-96d8-e27c398a51ee · outbound

This paper cites Monthly Weather Review127(12), 2977–2991 (1999).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Monthly Weather Review127(12), 2977–2991 (1999)

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Observation 9eb77807-1bdc-481c-8996-8d00fed806e1 · outbound

This paper cites International Geophysics, vol.

Breaking the Statistical Similarity Trap in Extreme Convection Detection International Geophysics, vol

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Observation 174e1059-5082-486a-a5f6-a7655e13b10e · outbound

This paper cites A Data-Centric Approach for Training Deep Neural Networks with Less Data.

Breaking the Statistical Similarity Trap in Extreme Convection Detection A Data-Centric Approach for Training Deep Neural Networks with Less Data

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Observation 29b2abb6-d099-45cb-b5b9-4d092a6cb240 · outbound

This paper cites Neural networks106, 249–259 (2018).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Neural networks106, 249–259 (2018)

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Observation 3ce0a539-1031-4de2-a18f-cfaa31512f8e · outbound

This paper cites Journal of artificial intelligence research16, 321–357 (2002).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Journal of artificial intelligence research16, 321–357 (2002)

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Observation 2cbc3cd2-8a7d-4423-bbe1-1d4c35c470e9 · outbound

This paper cites Proceedings of the national academy of sciences115(39), 9684–9689 (2018).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Proceedings of the national academy of sciences115(39), 9684–9689 (2018)

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Observation 4a531a5a-b3d5-4726-b347-def74cba8800 · outbound

This paper cites Earth and Space Science 10(5), 2022–002651 (2023).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Earth and Space Science 10(5), 2022–002651 (2023)

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Observation 7548c87b-6d1c-4636-9694-ad58c0680341 · outbound

This paper cites Journal of Applied Meteo- rology and Climatology47(2), 525–543 (2008).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Journal of Applied Meteo- rology and Climatology47(2), 525–543 (2008)

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Observation 9e8ba7af-5a75-40d9-8296-f33ef8002943 · outbound

This paper cites Weather and Forecasting34(5), 1395–1416 (2019).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Weather and Forecasting34(5), 1395–1416 (2019)

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Observation 0adca792-64d8-4306-a27f-8582ad3f7efa · outbound

This paper cites Generative Diffusion-based Downscaling for Climate.

Breaking the Statistical Similarity Trap in Extreme Convection Detection Generative Diffusion-based Downscaling for Climate

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Observation 44d2db3a-3ef8-48fd-8d83-c59009b6d1f5 · outbound

This paper cites Geoscientific Model Development17(21), 7915–7962 (2024).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Geoscientific Model Development17(21), 7915–7962 (2024)

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Observation f9e9d94b-3355-40a1-9ec0-e69ffe954593 · outbound

This paper cites Applied Sciences13(21), 12019 (2023).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Applied Sciences13(21), 12019 (2023)

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Observation a5579ee2-79b1-4f0a-b0d3-cda5aa3dbc4b · outbound

This paper cites Atmospheric Environment338, 120797 (2024).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Atmospheric Environment338, 120797 (2024)

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Observation eb5e9a87-c23d-443c-8c8f-a34043e2d589 · outbound

This paper cites Deep Learning and Foundation Models for Weather Prediction: A Survey.

Breaking the Statistical Similarity Trap in Extreme Convection Detection Deep Learning and Foundation Models for Weather Prediction: A Survey

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Observation f8a6d5c1-061a-45e9-96b0-08228708e581 · outbound

This paper cites https://www.ecmwf.int/en/forecasts/documentation-and-support/ changes-ecmwf-model (2025).

Breaking the Statistical Similarity Trap in Extreme Convection Detection https://www.ecmwf.int/en/forecasts/documentation-and-support/ changes-ecmwf-model (2025)

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Observation 9bd5cfb0-6d45-48f2-aedd-477880c8719c · outbound

This paper cites Atmosphere33(4), 399–411 (2023).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Atmosphere33(4), 399–411 (2023)

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Observation 948446de-d9b5-42a4-97cf-df708790e7e7 · outbound

This paper cites Nature637(8044), 84–90 (2025).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Nature637(8044), 84–90 (2025)

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Observation 034bce0e-7919-453c-a3bb-ff4cb59ab219 · outbound

This paper cites Artificial Intelligence for the Earth Systems (2025).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Artificial Intelligence for the Earth Systems (2025)

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Observation f96cccdc-6e19-4c86-8361-09fe7caf0879 · outbound

This paper cites Evidential Deep Learning for Probabilistic Modelling of Extreme Storm Events.

Breaking the Statistical Similarity Trap in Extreme Convection Detection Evidential Deep Learning for Probabilistic Modelling of Extreme Storm Events

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Observation 189ad588-ad04-4586-be85-715bfd10cacc · outbound

This paper cites European Centre for Medium- Range Weather Forecasts.

Breaking the Statistical Similarity Trap in Extreme Convection Detection European Centre for Medium- Range Weather Forecasts

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Observation 0db00f06-253a-404e-9519-0abf64f13aca · outbound

This paper cites Sensors (Basel, Switzerland)24(23), 7837 (2024).

Breaking the Statistical Similarity Trap in Extreme Convection Detection Sensors (Basel, Switzerland)24(23), 7837 (2024)

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Observation c2821511-2b0e-4b33-987a-c56d9f501536 · outbound

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Breaking the Statistical Similarity Trap in Extreme Convection Detection IEEE Access11, 135979–135993 (2023) 43

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