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Paper Citation Record · LEDGER

Redshift evolution of Lyman continuum escape fraction after JWST

As of 16 August 2026, this Paper Citation Record lists 100 of 103 outbound references and 0 inbound Pith citation observations for arXiv:2505.10619.

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pith.paper-citation-record.v1
2505.10619 v2

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measured 100 of 103 reference resolution

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Outbound references

Observation b1a61806-ed18-4684-97dd-c425974309eb · outbound

This paper cites The First Billion Years, According to JWST.

Redshift evolution of Lyman continuum escape fraction after JWST The First Billion Years, According to JWST

Reference 1

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Observation dbce634c-2561-4e8c-9556-2c32941890f9 · outbound

This paper cites J., Conselice, C.

Redshift evolution of Lyman continuum escape fraction after JWST J., Conselice, C

Reference 2

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Observation d2325ee6-5639-45e4-b653-2292e8e5954c · outbound

This paper cites I., et al.

Redshift evolution of Lyman continuum escape fraction after JWST I., et al

Reference 3

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Observation 54f1d137-b497-487f-b5f8-25202767dabd · outbound

This paper cites EPOCHS III: Unbiased UV continuum slopes at 6.5<z<13 from combined PEARLS GTO and public JWST NIRCam imaging.

Redshift evolution of Lyman continuum escape fraction after JWST EPOCHS III: Unbiased UV continuum slopes at 6.5<z<13 from combined PEARLS GTO and public JWST NIRCam imaging

Reference 4

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Observation 4e25bb32-2cae-4acb-9e96-43006cd6f02b · outbound

This paper cites Zapped then Napped? A rapidly quenched remnant leaker candidate with a steep spectroscopic $\beta_{UV}$ slope at z=8.5.

Redshift evolution of Lyman continuum escape fraction after JWST Zapped then Napped? A rapidly quenched remnant leaker candidate with a steep spectroscopic $\beta_{UV}$ slope at z=8.5

Reference 5

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Observation 33e5e351-1dc9-4c81-9c90-d86812b114f3 · outbound

This paper cites J., Cullen, F., et al.

Redshift evolution of Lyman continuum escape fraction after JWST J., Cullen, F., et al

Reference 6

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Observation 7bfb4f48-26f7-4cf7-9c0a-27aafd9fefce · outbound

This paper cites J., Illingworth, G.

Redshift evolution of Lyman continuum escape fraction after JWST J., Illingworth, G

Reference 7

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Observation b2ea8d48-84a6-4e79-b5a9-4ef672519607 · outbound

This paper cites Evolution of the UV LF from z~15 to z~8 Using New JWST NIRCam Medium-Band Observations over the HUDF/XDF.

Redshift evolution of Lyman continuum escape fraction after JWST Evolution of the UV LF from z~15 to z~8 Using New JWST NIRCam Medium-Band Observations over the HUDF/XDF

Reference 8

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Observation d5ec5058-56b1-4b80-9e2c-49cf78672fe7 · outbound

This paper cites J., Curtis-Lake, E., et al.

Redshift evolution of Lyman continuum escape fraction after JWST J., Curtis-Lake, E., et al

Reference 9

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Observation 02fdd983-3ac9-4d47-b354-38fd1d9c1358 · outbound

This paper cites JADES NIRSpec Spectroscopy of GN-z11: Lyman-$\alpha$ emission and possible enhanced nitrogen abundance in a $z=10.60$ luminous galaxy.

Redshift evolution of Lyman continuum escape fraction after JWST JADES NIRSpec Spectroscopy of GN-z11: Lyman-$\alpha$ emission and possible enhanced nitrogen abundance in a $z=10.60$ luminous galaxy

Reference 10

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Observation f2ed32ad-08de-4442-adc1-c2d03671e7ce · outbound

This paper cites New constraints on the galactic ionizing efficiency and escape fraction at 2.5 < z < 6 based on quasar absorption spectra.

Redshift evolution of Lyman continuum escape fraction after JWST New constraints on the galactic ionizing efficiency and escape fraction at 2.5 < z < 6 based on quasar absorption spectra

Reference 11

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Observation 878f3f17-1e3a-43d7-90c1-0217459a7892 · outbound

This paper cites 2024, Nature, 633, 318, doi: 10.1038/s41586-024-07860-9.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, Nature, 633, 318, doi: 10.1038/s41586-024-07860-9

Reference 12

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Observation 72566efd-2bb8-46d8-92e1-dd805bb9a14f · outbound

This paper cites A., Cen, R., Scarlata, C., et al.

Redshift evolution of Lyman continuum escape fraction after JWST A., Cen, R., Scarlata, C., et al

Reference 13

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Observation 9c6462ab-229f-4559-983f-e15f32a49381 · outbound

This paper cites J., et al.

Redshift evolution of Lyman continuum escape fraction after JWST J., et al

Reference 14

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Observation 8612670a-25f4-46b1-ae4c-936533d48a87 · outbound

This paper cites 2024, The Astrophysical Journal, 968, 32, doi: 10.3847/1538-4357/ad4033.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, The Astrophysical Journal, 968, 32, doi: 10.3847/1538-4357/ad4033

Reference 15

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Observation 655dfe4a-680f-4bf4-9f23-2f4e862a2680 · outbound

This paper cites 2022, MNRAS, 517, 5104, doi: 10.1093/mnras/stac2874.

Redshift evolution of Lyman continuum escape fraction after JWST 2022, MNRAS, 517, 5104, doi: 10.1093/mnras/stac2874

Reference 16

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Observation fc86b7c2-393d-4d45-9949-8da14140d694 · outbound

This paper cites W., Papovich, C., Finkelstein, S.

Redshift evolution of Lyman continuum escape fraction after JWST W., Papovich, C., Finkelstein, S

Reference 17

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Observation 746523b2-606f-4bc0-be8d-0d75b309e71a · outbound

This paper cites J., McLure, R.

Redshift evolution of Lyman continuum escape fraction after JWST J., McLure, R

Reference 18

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Observation 35e5759b-6bed-49b7-b723-3f196ce49b73 · outbound

This paper cites 2024, A&A, 684, A75, doi: 10.1051/0004-6361/202346698.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, A&A, 684, A75, doi: 10.1051/0004-6361/202346698

Reference 19

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Observation 2de88a2f-7ab3-4e44-8f8c-f041a2aca0e4 · outbound

This paper cites 2023, Nature Astronomy, doi: 10.1038/s41550-023-01918-w.

Redshift evolution of Lyman continuum escape fraction after JWST 2023, Nature Astronomy, doi: 10.1038/s41550-023-01918-w

Reference 20

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Observation 905a3488-c941-4ec4-9366-b883d5fe2636 · outbound

This paper cites 2018, PhR, 780, 1, doi: 10.1016/j.physrep.2018.10.002.

Redshift evolution of Lyman continuum escape fraction after JWST 2018, PhR, 780, 1, doi: 10.1016/j.physrep.2018.10.002

Reference 21

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Observation 6e997e3c-3a37-409c-a4ab-5b4bde1ae82f · outbound

This paper cites 2017, MNRAS, 471, 4476, doi: 10.1093/mnras/stx1879.

Redshift evolution of Lyman continuum escape fraction after JWST 2017, MNRAS, 471, 4476, doi: 10.1093/mnras/stx1879

Reference 22

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Observation b7c4e1af-148d-4d9b-b894-94cc4372f148 · outbound

This paper cites T., McLeod, D.

Redshift evolution of Lyman continuum escape fraction after JWST T., McLeod, D

Reference 23

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Observation f19b12cc-e460-4652-a568-dc1b26783482 · outbound

This paper cites Evolution of the UV slope of galaxies at cosmic morning (z > 4): the properties of extremely blue galaxies.

Redshift evolution of Lyman continuum escape fraction after JWST Evolution of the UV slope of galaxies at cosmic morning (z > 4): the properties of extremely blue galaxies

Reference 24

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Observation 3b86bebc-947f-44bb-af8c-e169a9f30998 · outbound

This paper cites U., Bomans, D.

Redshift evolution of Lyman continuum escape fraction after JWST U., Bomans, D

Reference 25

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Observation 4b59cac8-cc54-47e5-8f32-c69611fc61a8 · outbound

This paper cites P., Whitler, L., et al.

Redshift evolution of Lyman continuum escape fraction after JWST P., Whitler, L., et al

Reference 26

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This paper cites 2024a, A&A, 684, A207, doi: 10.1051/0004-6361/202348321 —.

Redshift evolution of Lyman continuum escape fraction after JWST 2024a, A&A, 684, A207, doi: 10.1051/0004-6361/202348321 —

Reference 27

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Observation ea83387f-96d1-4403-8f8f-2e9c975d4fec · outbound

This paper cites 2025a, A&A, 694, A215, doi: 10.1051/0004-6361/202452368.

Redshift evolution of Lyman continuum escape fraction after JWST 2025a, A&A, 694, A215, doi: 10.1051/0004-6361/202452368

Reference 28

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Observation 6fad0344-7ba6-416a-a995-11d3bc2edb89 · outbound

This paper cites 2023, MNRAS, 522, 3986, doi: 10.1093/mnras/stad1095.

Redshift evolution of Lyman continuum escape fraction after JWST 2023, MNRAS, 522, 3986, doi: 10.1093/mnras/stad1095

Reference 29

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Redshift evolution of Lyman continuum escape fraction after JWST 2025b, A&A, 694, A286, doi: 10.1051/0004-6361/202452707

Reference 30

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Observation ffe7d4dc-7a93-4d35-b511-473943bef98e · outbound

This paper cites L., Leung, G.

Redshift evolution of Lyman continuum escape fraction after JWST L., Leung, G

Reference 31

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This paper cites 2023, ApJL, 943, L27, doi: 10.3847/2041-8213/acb5f2.

Redshift evolution of Lyman continuum escape fraction after JWST 2023, ApJL, 943, L27, doi: 10.3847/2041-8213/acb5f2

Reference 32

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This paper cites 2024a, LyCsurv, v0.1.0, Zenodo, doi: 10.5281/zenodo.11392442.

Redshift evolution of Lyman continuum escape fraction after JWST 2024a, LyCsurv, v0.1.0, Zenodo, doi: 10.5281/zenodo.11392442

Reference 33

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Observation af23d344-a235-4d85-9c07-1cf264c2229a · outbound

This paper cites R., Moran, E.

Redshift evolution of Lyman continuum escape fraction after JWST R., Moran, E

Reference 34

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Observation 47a5a57a-5e3c-439c-89a2-8a514e07f5b0 · outbound

This paper cites R., Jaskot, A.

Redshift evolution of Lyman continuum escape fraction after JWST R., Jaskot, A

Reference 35

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This paper cites The Low-Redshift Lyman Continuum Survey: The Roles of Stellar Feedback and ISM Geometry in LyC Escape.

Redshift evolution of Lyman continuum escape fraction after JWST The Low-Redshift Lyman Continuum Survey: The Roles of Stellar Feedback and ISM Geometry in LyC Escape

Reference 36

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Observation ae88a4a3-727c-4a5e-af15-a43a6975a34c · outbound

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Observation 3f342d70-5ad2-4b19-b855-2f012ae83485 · outbound

This paper cites UNCOVER: A NIRSpec Census of Lensed Galaxies at z=8.50-13.08 Probing a High AGN Fraction and Ionized Bubbles in the Shadow.

Redshift evolution of Lyman continuum escape fraction after JWST UNCOVER: A NIRSpec Census of Lensed Galaxies at z=8.50-13.08 Probing a High AGN Fraction and Ionized Bubbles in the Shadow

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Observation aab2c0b0-963e-4fae-99b2-177330f9c08a · outbound

This paper cites Temporarily quiescent galaxies at cosmic dawn: probing bursty star formation.

Redshift evolution of Lyman continuum escape fraction after JWST Temporarily quiescent galaxies at cosmic dawn: probing bursty star formation

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Observation ae65a76d-ef71-477a-bd7c-f87d0947df20 · outbound

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Observation 8b94b69e-45d9-4f8a-beac-1ef449f38cb1 · outbound

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Reference 41

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Observation fc6ef076-55e4-4556-9789-63493f6ea4fb · outbound

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Observation 72257551-29e9-479e-8534-99bf2c022b14 · outbound

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Observation ae36bda2-5c20-4e7c-b139-fecd2e4aacf8 · outbound

This paper cites 2017, A&A, 602, A18, doi: 10.1051/0004-6361/201730447.

Redshift evolution of Lyman continuum escape fraction after JWST 2017, A&A, 602, A18, doi: 10.1051/0004-6361/201730447

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Observation c958c397-c0a6-41b7-aca6-68a51ec0ad1c · outbound

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Observation 51931d63-b0c1-44ce-a1ba-149fe4d3c414 · outbound

This paper cites 2024, ApJ, 960, 56, doi: 10.3847/1538-4357/ad0b7e.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, ApJ, 960, 56, doi: 10.3847/1538-4357/ad0b7e

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Observation edc12835-e680-4e58-b7aa-53038a40e0c0 · outbound

This paper cites Photometric detection at $7.7\ \mu\mathrm{m}$ of a galaxy beyond redshift $14$ with JWST/MIRI.

Redshift evolution of Lyman continuum escape fraction after JWST Photometric detection at $7.7\ \mu\mathrm{m}$ of a galaxy beyond redshift $14$ with JWST/MIRI

Reference 47

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Observation b4e386d3-338f-4cf6-8572-240d7c9c4f2c · outbound

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Observation 4d74a1e2-3bf9-4a45-a75f-29c55e6dee7f · outbound

This paper cites an unresolved cited work.

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Reference 49

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Observation 12967734-c430-483b-bc83-089727d83957 · outbound

This paper cites K., Shimizu, I., Iwata, I., & Tanaka, M.

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Observation 313f48cc-5599-4993-a355-d08b89914d95 · outbound

This paper cites I., Schaerer, D., Worseck, G., et al.

Redshift evolution of Lyman continuum escape fraction after JWST I., Schaerer, D., Worseck, G., et al

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Observation 6d2053cc-92ed-4e38-9205-32d021576651 · outbound

This paper cites I., Worseck, G., Schaerer, D., et al.

Redshift evolution of Lyman continuum escape fraction after JWST I., Worseck, G., Schaerer, D., et al

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Observation bbb91f68-5997-4ccb-bb16-8c0c5eaeb457 · outbound

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Observation 926cec18-36a4-4874-978a-b2fd9a59bd89 · outbound

This paper cites C., & Oey, M.

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unresolved
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Observation 09421007-7064-4f66-bbce-ddf2566286eb · outbound

This paper cites The Importance of Dust Distribution in Ionizing-photon Escape: NIRCam and MIRI Imaging of a Lyman Continuum-emitting Galaxy at z ~ 3.8.

Redshift evolution of Lyman continuum escape fraction after JWST The Importance of Dust Distribution in Ionizing-photon Escape: NIRCam and MIRI Imaging of a Lyman Continuum-emitting Galaxy at z ~ 3.8

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Observation de8045de-a0ff-48fa-8893-401a269478b2 · outbound

This paper cites 2019, MNRAS, 486, 2215, doi: 10.1093/mnras/stz989.

Redshift evolution of Lyman continuum escape fraction after JWST 2019, MNRAS, 486, 2215, doi: 10.1093/mnras/stz989

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Observation f309b4fd-f8c9-4a59-914f-5d10a422a113 · outbound

This paper cites 2018, MNRAS, 475, 4617, doi: 10.1093/mnras/sty126.

Redshift evolution of Lyman continuum escape fraction after JWST 2018, MNRAS, 475, 4617, doi: 10.1093/mnras/sty126

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Observation 17c36682-b4c6-4d4d-b7a6-eabbedbfb068 · outbound

This paper cites Rapid Chemical Enrichment by Intermittent Star Formation in GN-z11.

Redshift evolution of Lyman continuum escape fraction after JWST Rapid Chemical Enrichment by Intermittent Star Formation in GN-z11

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Resolution
unresolved
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Observation 4dc98ca1-0915-415f-b1bf-02aff8c9827e · outbound

This paper cites CAPERS Observations of Two UV-Bright Galaxies at z>10. More Evidence for Bursting Star Formation in the Early Universe.

Redshift evolution of Lyman continuum escape fraction after JWST CAPERS Observations of Two UV-Bright Galaxies at z>10. More Evidence for Bursting Star Formation in the Early Universe

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Observation 637bf35f-6223-403e-aaf7-1ce7d35d2800 · outbound

This paper cites S., Krumholz, M.

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Observation f44e11c0-d0ed-4d1b-b413-eaa0f176058a · outbound

This paper cites 2025, A&A, 695, A32, doi: 10.1051/0004-6361/202449997 LyC escape fraction 9.

Redshift evolution of Lyman continuum escape fraction after JWST 2025, A&A, 695, A32, doi: 10.1051/0004-6361/202449997 LyC escape fraction 9

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Observation 94532361-ba13-479d-98c8-5b06b715eac3 · outbound

This paper cites 2014, ApJL, 793, L5, doi: 10.1088/2041-8205/793/1/L5.

Redshift evolution of Lyman continuum escape fraction after JWST 2014, ApJL, 793, L5, doi: 10.1088/2041-8205/793/1/L5

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Observation d0877fce-9e40-42b5-a1fd-004828d63553 · outbound

This paper cites 2024, A&A, 687, A73, doi: 10.1051/0004-6361/202449362.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, A&A, 687, A73, doi: 10.1051/0004-6361/202449362

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Observation 2805e5d2-68de-4f6e-bd76-d0e8897afa6d · outbound

This paper cites The ionizing photon production efficiency of star-forming galaxies at $z\sim 4-10$.

Redshift evolution of Lyman continuum escape fraction after JWST The ionizing photon production efficiency of star-forming galaxies at $z\sim 4-10$

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Observation 7aa7a086-4391-4e7f-b56c-2b001bda3632 · outbound

This paper cites A recently quenched galaxy 700 million years after the Big Bang.

Redshift evolution of Lyman continuum escape fraction after JWST A recently quenched galaxy 700 million years after the Big Bang

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Observation b8f4363a-6618-43af-973e-164972ea0c9e · outbound

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Redshift evolution of Lyman continuum escape fraction after JWST R., Chisholm, J., et al

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Observation 8aba279b-8870-49da-9be0-3af865ede1d4 · outbound

This paper cites 2017, A&A, 601, A73, doi: 10.1051/0004-6361/201630054.

Redshift evolution of Lyman continuum escape fraction after JWST 2017, A&A, 601, A73, doi: 10.1051/0004-6361/201630054

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unresolved
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Observation fd1188b0-da64-4246-83b7-a6b581d3b4d7 · outbound

This paper cites 2022, MNRAS, 517, 2972, doi: 10.1093/mnras/stac2893.

Redshift evolution of Lyman continuum escape fraction after JWST 2022, MNRAS, 517, 2972, doi: 10.1093/mnras/stac2893

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Observation d293b313-3935-47f4-86a3-2f703a2bb6e4 · outbound

This paper cites 2024, A&A, 691, A87, doi: 10.1051/0004-6361/202451667.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, A&A, 691, A87, doi: 10.1051/0004-6361/202451667

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Resolution
unresolved
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Observation 6aa0efe8-89f5-441e-8949-ed73eb46e0fb · outbound

This paper cites 2024, A&A, 685, A3, doi: 10.1051/0004-6361/202347884.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, A&A, 685, A3, doi: 10.1051/0004-6361/202347884

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Resolution
unresolved
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Observation a9a69afc-e95b-403e-91dd-34dd0f4ae4e2 · outbound

This paper cites Little impact of mergers and galaxy morphology on the production and escape of ionizing photons in the early Universe.

Redshift evolution of Lyman continuum escape fraction after JWST Little impact of mergers and galaxy morphology on the production and escape of ionizing photons in the early Universe

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Resolution
unresolved
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source=pdf_text observed=2026-08-15T21:11:35.440498Z digest=sha256:9529c4e52715d2f3a9bfa352f6a799b4fdb78b7200188aafa0eebb9af370b4bb

Observation 688ccf0c-8dcc-493b-a42a-8294dd42e1cd · outbound

This paper cites The galaxy UV luminosity function at $\mathbf{z \simeq 11}$ from a suite of public JWST ERS, ERO and Cycle-1 programs.

Redshift evolution of Lyman continuum escape fraction after JWST The galaxy UV luminosity function at $\mathbf{z \simeq 11}$ from a suite of public JWST ERS, ERO and Cycle-1 programs

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Observation 93750774-964a-40bb-a8db-74dcd769d9e5 · outbound

This paper cites Unraveling the Lyman Continuum Emission of Ion3: Insights from HST multi-band imaging and X-Shooter spectroscopy.

Redshift evolution of Lyman continuum escape fraction after JWST Unraveling the Lyman Continuum Emission of Ion3: Insights from HST multi-band imaging and X-Shooter spectroscopy

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Observation 84491ddb-4295-4633-b759-74fb64514415 · outbound

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Redshift evolution of Lyman continuum escape fraction after JWST Unresolved cited work

Reference 74

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Observation ea772b43-189c-438f-8e9c-1c7bb2a79246 · outbound

This paper cites Galaxy Rest-Frame UV Colors at z ~ 2-4 with HST UVCANDELS.

Redshift evolution of Lyman continuum escape fraction after JWST Galaxy Rest-Frame UV Colors at z ~ 2-4 with HST UVCANDELS

Reference 75

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Observation bd2af699-a4ab-401b-8c82-554f3b3a2e1a · outbound

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Redshift evolution of Lyman continuum escape fraction after JWST M., Finkelstein, S

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Observation 5e8171bb-573f-4ca6-b6d6-f94c120c4769 · outbound

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Reference 77

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Observation 5c9897da-c7e8-433a-858f-56e3961162f9 · outbound

This paper cites 2024, arXiv e-prints, arXiv:2412.07598, doi: 10.48550/arXiv.2412.07598.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, arXiv e-prints, arXiv:2412.07598, doi: 10.48550/arXiv.2412.07598

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Observation 741f6e30-674b-4972-ac19-2d5f4d361044 · outbound

This paper cites 2023, ApJL, 947, L26, doi: 10.3847/2041-8213/acbfb9.

Redshift evolution of Lyman continuum escape fraction after JWST 2023, ApJL, 947, L26, doi: 10.3847/2041-8213/acbfb9

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Observation 3408392e-f811-4893-9613-9a09b1c399cb · outbound

This paper cites The Ultraviolet Slopes of Early Universe Galaxies: The Impact of Bursty Star Formation, Dust, and Nebular Continuum Emission.

Redshift evolution of Lyman continuum escape fraction after JWST The Ultraviolet Slopes of Early Universe Galaxies: The Impact of Bursty Star Formation, Dust, and Nebular Continuum Emission

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Observation ab41c36a-e852-4808-ab6e-e7a529d51df9 · outbound

This paper cites 2025, MNRAS, 537, 1646, doi: 10.1093/mnras/staf038.

Redshift evolution of Lyman continuum escape fraction after JWST 2025, MNRAS, 537, 1646, doi: 10.1093/mnras/staf038

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Observation acefa278-18cc-46e4-a463-4baee93564b3 · outbound

This paper cites A., Heckman, T.

Redshift evolution of Lyman continuum escape fraction after JWST A., Heckman, T

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Observation d3c187ae-bff9-40b5-acb5-349e3857589f · outbound

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Redshift evolution of Lyman continuum escape fraction after JWST W., Shapley, A., et al

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Observation 23e01e2e-1a26-40e1-9073-40c48c27a64c · outbound

This paper cites 2023, A&A, 677, L4, doi: 10.1051/0004-6361/202347384.

Redshift evolution of Lyman continuum escape fraction after JWST 2023, A&A, 677, L4, doi: 10.1051/0004-6361/202347384

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Observation 34da2cbc-4b14-4913-b0f3-4ac27c4872af · outbound

This paper cites W., Hu, W., et al.

Redshift evolution of Lyman continuum escape fraction after JWST W., Hu, W., et al

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Observation c6dac534-e723-4ec1-a061-1ea0b48876a5 · outbound

This paper cites 2020, MNRAS, 495, 160, doi: 10.1093/mnras/staa1163.

Redshift evolution of Lyman continuum escape fraction after JWST 2020, MNRAS, 495, 160, doi: 10.1093/mnras/staa1163

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Observation 8793e916-9c30-4cdf-8204-78b0d700f4c6 · outbound

This paper cites E., Dahle, H., Chisholm, J., et al.

Redshift evolution of Lyman continuum escape fraction after JWST E., Dahle, H., Chisholm, J., et al

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This paper cites 2024, ApJ, 976, 193, doi: 10.3847/1538-4357/ad85d3.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, ApJ, 976, 193, doi: 10.3847/1538-4357/ad85d3

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Observation 3f9b8e34-9580-4efc-899a-017d46ba292f · outbound

This paper cites Hitting the slopes: A spectroscopic view of UV continuum slopes of galaxies reveals a reddening at z > 9.5.

Redshift evolution of Lyman continuum escape fraction after JWST Hitting the slopes: A spectroscopic view of UV continuum slopes of galaxies reveals a reddening at z > 9.5

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Observation 9c513b40-addc-48e8-9c45-b307329cace8 · outbound

This paper cites The impact of UV variability on the abundance of bright galaxies at $z \geq 9$.

Redshift evolution of Lyman continuum escape fraction after JWST The impact of UV variability on the abundance of bright galaxies at $z \geq 9$

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Observation 2c8479ef-55cf-4c4e-8055-b2d8bb0ccf4e · outbound

This paper cites 2024, MNRAS, 535, 2998, doi: 10.1093/mnras/stae2537.

Redshift evolution of Lyman continuum escape fraction after JWST 2024, MNRAS, 535, 2998, doi: 10.1093/mnras/stae2537

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Observation ef908352-aa89-4d26-aaf5-3cba702ed5a5 · outbound

This paper cites 2017, MNRAS, 464, 2963, doi: 10.1093/mnras/stw2591.

Redshift evolution of Lyman continuum escape fraction after JWST 2017, MNRAS, 464, 2963, doi: 10.1093/mnras/stw2591

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Observation 4f700092-ab49-484d-a474-d62c17f6e8e7 · outbound

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Redshift evolution of Lyman continuum escape fraction after JWST Unresolved cited work

Reference 93

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Observation 07c1c1d0-30bb-4d8f-b70f-bb0c2277096c · outbound

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Observation 0beb1630-b52f-4d53-9171-2f5707b542c9 · outbound

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Redshift evolution of Lyman continuum escape fraction after JWST M., & Ferrara, A

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Observation 7de08046-49ff-4652-be94-deaee5aa032b · outbound

This paper cites The UV Continuum Slopes of Early Star-Forming Galaxies in JADES.

Redshift evolution of Lyman continuum escape fraction after JWST The UV Continuum Slopes of Early Star-Forming Galaxies in JADES

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Observation 3f1bb30b-2a39-406b-8203-8aef0696cd9b · outbound

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Redshift evolution of Lyman continuum escape fraction after JWST 2016, ApJ, 825, 41, doi: 10.3847/0004-637X/825/1/41

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Observation 59f74d54-1565-468d-b4e5-1f0280d742ae · outbound

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Redshift evolution of Lyman continuum escape fraction after JWST 2022, A&A, 659, A2, doi: 10.1051/0004-6361/202141590 10 Ferrara et al

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Observation 162ca6e0-616c-470e-a4e4-727ee024e529 · outbound

This paper cites I., Smith, B.

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Observation a1557f83-ed2b-4b36-9742-745293dd9938 · outbound

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