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Paper Citation Record · LEDGER

Enhancement of far-field thermal emission via polaritonic cavity modes

As of 6 August 2026, this Paper Citation Record lists 38 of 38 outbound references and 0 inbound Pith citation observations for arXiv:2608.03621.

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

pith.paper-citation-record.v1
2608.03621 v1

Coverage vector

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Reference resolution

38 of 38 outbound references displayed

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External citation measurements

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Outbound references

Observation 984ad23c-54d5-4152-9b1a-ed6b9d67fa85 · outbound

This paper cites Blakiston’s Son & Co., Philadelphia, 1914).

Enhancement of far-field thermal emission via polaritonic cavity modes Blakiston’s Son & Co., Philadelphia, 1914)

Reference 1

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Observation fcc062df-473a-416d-a409-37aa30849bfc · outbound

This paper cites On the relationship between the emissivity and the absorptivity of bodies for heat and light.Ann.

Enhancement of far-field thermal emission via polaritonic cavity modes On the relationship between the emissivity and the absorptivity of bodies for heat and light.Ann

Reference 2

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Observation 202635fa-9e5c-4214-9e14-c32755542de6 · outbound

This paper cites F.Radiative Heat Transfer3 edn (Academic Press, Oxford, UK, 2013).

Enhancement of far-field thermal emission via polaritonic cavity modes F.Radiative Heat Transfer3 edn (Academic Press, Oxford, UK, 2013)

Reference 3

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 4

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 5

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Observation daee1e41-c9b5-422a-a0ca-0bf0bd60ed00 · outbound

This paper cites Appl.12, 226 (2023).

Enhancement of far-field thermal emission via polaritonic cavity modes Appl.12, 226 (2023)

Reference 6

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Observation 7b4cf9ff-7acb-4189-a3eb-383a9965ff49 · outbound

This paper cites URL https://doi.org/10.1038/416061a.

Enhancement of far-field thermal emission via polaritonic cavity modes URL https://doi.org/10.1038/416061a

Reference 7

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Observation e79197a0-1b09-4f2c-9cba-1562be20f829 · outbound

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 8

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Observation 4a70eca8-23f0-4fb8-b6cf-5e616b551e00 · outbound

This paper cites S.et al.Localized thermal emission from topological interfaces.Science384, 1122–1126 (2024).

Enhancement of far-field thermal emission via polaritonic cavity modes S.et al.Localized thermal emission from topological interfaces.Science384, 1122–1126 (2024)

Reference 9

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Observation 45540314-cc14-432e-8cb3-530618da1f58 · outbound

This paper cites P., Anoma, M.

Enhancement of far-field thermal emission via polaritonic cavity modes P., Anoma, M

Reference 10

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Observation c028d5fe-305f-400c-976b-1e2267e67174 · outbound

This paper cites Nanotechnol.9, 126–130 (2014).

Enhancement of far-field thermal emission via polaritonic cavity modes Nanotechnol.9, 126–130 (2014)

Reference 11

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Observation c44347bb-6053-4348-8205-7f4912be2b53 · outbound

This paper cites A.et al.Plasmonics for extreme light concentration and manipulation.Nat.

Enhancement of far-field thermal emission via polaritonic cavity modes A.et al.Plasmonics for extreme light concentration and manipulation.Nat

Reference 12

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Observation a6df1ec7-4d7a-4d60-ba67-bbfefc40d0b0 · outbound

This paper cites Adv.6, eabb4461 (2020).

Enhancement of far-field thermal emission via polaritonic cavity modes Adv.6, eabb4461 (2020)

Reference 15

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Observation 3b01dd8a-b5ff-4483-b5f6-681faea7b009 · outbound

This paper cites D.et al.Sub-diffractional volume-confined polaritons in the natural hyperbolic material hexagonal boron nitride.Nat.

Enhancement of far-field thermal emission via polaritonic cavity modes D.et al.Sub-diffractional volume-confined polaritons in the natural hyperbolic material hexagonal boron nitride.Nat

Reference 16

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Observation cf7f4ff5-aa7b-4b1c-a749-2632c5da19a3 · outbound

This paper cites & Carminati, R.

Enhancement of far-field thermal emission via polaritonic cavity modes & Carminati, R

Reference 17

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Observation c50303cd-e1ca-4dbf-9b1c-e2a05358e9ea · outbound

This paper cites I., Sajuyigbe, S., Mock, J.

Enhancement of far-field thermal emission via polaritonic cavity modes I., Sajuyigbe, S., Mock, J

Reference 18

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Observation 77959323-8a68-4038-aafa-08f4f176cbe0 · outbound

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Enhancement of far-field thermal emission via polaritonic cavity modes & Jacob, Z

Reference 19

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Observation f41f4c6e-6970-4b28-928c-82d518a87a66 · outbound

This paper cites & Raman, A.

Enhancement of far-field thermal emission via polaritonic cavity modes & Raman, A

Reference 20

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 21

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 22

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 23

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Observation dee0f78c-18f5-47f5-8f34-cade8d809b20 · outbound

This paper cites Energy231, 120877 (2024).

Enhancement of far-field thermal emission via polaritonic cavity modes Energy231, 120877 (2024)

Reference 24

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Observation e3867f94-bcd2-497e-a22a-37593d32a81c · outbound

This paper cites M.Theory of Electrical Fluctuations(Academy of Sciences Press, Moscow, 1953).

Enhancement of far-field thermal emission via polaritonic cavity modes M.Theory of Electrical Fluctuations(Academy of Sciences Press, Moscow, 1953)

Reference 25

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This paper cites W., Reid, M.

Enhancement of far-field thermal emission via polaritonic cavity modes W., Reid, M

Reference 26

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Enhancement of far-field thermal emission via polaritonic cavity modes & Hane, K

Reference 27

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Observation 1dd37b2c-0685-462e-b1df-fa8f17e381f4 · outbound

This paper cites G.et al.Nanophotonic engineering of far-field thermal emitters.Nat.

Enhancement of far-field thermal emission via polaritonic cavity modes G.et al.Nanophotonic engineering of far-field thermal emitters.Nat

Reference 28

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Enhancement of far-field thermal emission via polaritonic cavity modes & Ordonez-Miranda, J

Reference 29

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 30

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 31

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 32

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This paper cites Photon Torpedoes and Rytov Pinwheels: Integral-Equation Modeling of Non-Equilibrium Fluctuation-Induced Forces and Torques on Nanoparticles.

Enhancement of far-field thermal emission via polaritonic cavity modes Photon Torpedoes and Rytov Pinwheels: Integral-Equation Modeling of Non-Equilibrium Fluctuation-Induced Forces and Torques on Nanoparticles

Reference 33

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Observation 21ce2703-1d65-42d6-b75c-5da4f130eb9e · outbound

This paper cites L., Merchiers, O.

Enhancement of far-field thermal emission via polaritonic cavity modes L., Merchiers, O

Reference 34

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Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 35

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Observation 6071ea3f-2a02-4037-be5c-634cf9cb49f6 · outbound

This paper cites Energy 191, 662–668 (2022).

Enhancement of far-field thermal emission via polaritonic cavity modes Energy 191, 662–668 (2022)

Reference 36

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Observation 1404b9dd-61a0-44c5-bb7d-6355accd66bb · outbound

This paper cites Matter 292, 286–295 (2000).

Enhancement of far-field thermal emission via polaritonic cavity modes Matter 292, 286–295 (2000)

Reference 37

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Observation c0f3cf87-432d-4075-b082-23362e849434 · outbound

This paper cites Mater.31, 2873 (2019).

Enhancement of far-field thermal emission via polaritonic cavity modes Mater.31, 2873 (2019)

Reference 38

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raw_fallback, observed 2026-08-05T15:53:30.919786Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

source=pdf_text observed=2026-08-05T15:53:27.455932Z digest=sha256:70887429a95b133e0f44052dcc8ceb76c15ed91f9e028ccf73ff2a5c65bdd798

Observation 1a6150ef-c0d9-4b11-bc19-3321d0830f75 · outbound

This paper cites an unresolved cited work.

Enhancement of far-field thermal emission via polaritonic cavity modes Unresolved cited work

Reference 39

Resolution
unresolved
raw_fallback, observed 2026-08-05T15:53:31.502773Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

source=pdf_text observed=2026-08-05T15:53:27.545239Z digest=sha256:4867f3730990ac84b6e0ceccbbbfadf6ab1a04ed215e07a7fce7fa7cc63d9bc1

Observation 5113f0a8-3fe5-4056-b9df-6dea1a0da627 · outbound

This paper cites & Wolf, E.Principles of Optics: Electromagnetic Theory of Propagation, Interference and Diffraction of Light7 edn (Cambridge University Press, 1999).

Enhancement of far-field thermal emission via polaritonic cavity modes & Wolf, E.Principles of Optics: Electromagnetic Theory of Propagation, Interference and Diffraction of Light7 edn (Cambridge University Press, 1999)

Reference 40

Resolution
verified fuzzy
raw_fallback, observed 2026-08-05T15:53:31.301031Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

source=pdf_text observed=2026-08-05T15:53:27.633412Z digest=sha256:763f41ea9d8f822e49f7c13cc7930638c1166ece798386a7d251bf5939f33fd0

Pith citing papers

No inbound Pith citation observations are available.