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Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

As of 4 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 33 inbound Pith citation observations for arXiv:2404.06399.

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pith.paper-citation-record.v1
2404.06399 v2

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measured 33 of 33 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-04T06:34:03.388597+00:00

measured 33 of 33 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-03T12:00:01.462763Z

measured 0 of 1 external citation measurements

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Source: pith, observed 2026-07-09T00:05:47.922166Z

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Pith citing papers

Observation ff2b1755-59a0-4d5c-8a20-1780db883c1b · inbound

Effects of Final State Interactions on Landau Singularities cites this paper.

Effects of Final State Interactions on Landau Singularities Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 68

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arxiv_id, observed 2026-05-23T23:53:38.962014Z

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Observation d4a971d1-c8a5-4497-b47b-e6ff091c1191 · inbound

Model-independent mass determination of near-threshold states from short-range production cites this paper.

Model-independent mass determination of near-threshold states from short-range production Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 9

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arxiv_id, observed 2026-05-18T04:25:51.848388Z

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Observation 63b835dc-a08c-4489-a44d-efa2046d3f70 · inbound

Short-range production of three bottom mesons cites this paper.

Short-range production of three bottom mesons Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 9

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arxiv_id, observed 2026-05-17T04:24:00.425722Z

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Observation b6382673-57c1-4e9b-8514-32588380ada7 · inbound

Effective Range Expansion with the Left-Hand Cut: Higher Order Improvements cites this paper.

Effective Range Expansion with the Left-Hand Cut: Higher Order Improvements Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 6

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The dynamically generated $h_1$ state by the $K^*\bar{K}^*$ interaction and its $K_1(1270)\bar{K}$ and $b_1(1235)\pi$ decays cites this paper.

The dynamically generated $h_1$ state by the $K^*\bar{K}^*$ interaction and its $K_1(1270)\bar{K}$ and $b_1(1235)\pi$ decays Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 13

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Observation 2182acac-faef-4292-a0f7-1687a122b39b · inbound

Assessing the validity of the Born-Oppenheimer approximation in potential models for doubly heavy hadrons cites this paper.

Assessing the validity of the Born-Oppenheimer approximation in potential models for doubly heavy hadrons Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 15

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arxiv_id, observed 2026-05-16T05:30:39.166565Z

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Observation ec7d2824-9d00-45d2-9d38-673a075a2b35 · inbound

Three-body molecular states composed of $D^{(*)}$ and two nucleons cites this paper.

Three-body molecular states composed of $D^{(*)}$ and two nucleons Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 23

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arxiv_id, observed 2026-05-25T07:06:41.599765Z

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Observation 0f272779-4328-476c-a577-be54c4ec779b · inbound

Unquenched Charmonium and Beyond cites this paper.

Unquenched Charmonium and Beyond Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 247

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Observation 31023ef7-7290-4bb0-8d04-5abf10228f1f · inbound

Finding Low Star Discrepancy 3D Kronecker Point Sets Using Algorithm Configuration Techniques cites this paper.

Finding Low Star Discrepancy 3D Kronecker Point Sets Using Algorithm Configuration Techniques Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 81

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Observation e0aea624-dc4d-4a50-b65c-6f75cfbe91e2 · inbound

Correlation function and bound state from the $K D_{s0}^*(2317)$ interaction cites this paper.

Correlation function and bound state from the $K D_{s0}^*(2317)$ interaction Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 62

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Observation 95f3d357-cf7e-4dbd-a91b-d57a4d42e86e · inbound

Proposed mixing between $2P$ and $1F$ wave charmonia cites this paper.

Proposed mixing between $2P$ and $1F$ wave charmonia Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 60

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Observation 841e552e-0afa-4139-b705-1c8906872c79 · inbound

Analysis of the $D_0^*(2300)$ resonance from lattice QCD under chiral symmetry cites this paper.

Analysis of the $D_0^*(2300)$ resonance from lattice QCD under chiral symmetry Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 30

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Observation cebc78d5-03e7-434e-b334-91ca4075bc47 · inbound

Coupled-channel study of the three-body $DDK$ and $D^{*}D^{*}K$ cites this paper.

Coupled-channel study of the three-body $DDK$ and $D^{*}D^{*}K$ Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 7

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Observation e45f1a0a-c28f-4a36-8dbe-80c7499a2df2 · inbound

Determination of the $Z_c(3900)$ and the $Z_{cs}(3985)$ states from joint analysis of experimental and lattice data cites this paper.

Determination of the $Z_c(3900)$ and the $Z_{cs}(3985)$ states from joint analysis of experimental and lattice data Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 56

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Observation 7e4cd687-6b81-4f1a-ba14-36b65d77b795 · inbound

Probing the hadronic molecular nature of the $\Omega(2012)$, $\Omega(2380)$, and $\Omega_c(3120)$ via femtoscopy correlation functions cites this paper.

Probing the hadronic molecular nature of the $\Omega(2012)$, $\Omega(2380)$, and $\Omega_c(3120)$ via femtoscopy correlation functions Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 61

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Observation f393211b-e9bb-41ca-828a-afa6f58b7f06 · inbound

Probing the hadronic molecular nature of the $\Omega(2012)$, $\Omega(2380)$, and $\Omega_c(3120)$ via femtoscopy correlation functions cites this paper.

Probing the hadronic molecular nature of the $\Omega(2012)$, $\Omega(2380)$, and $\Omega_c(3120)$ via femtoscopy correlation functions Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 61

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Observation b3ee7bff-5de9-4561-a15d-b4924c96ba97 · inbound

Does $\psi(4660)$ exist? cites this paper.

Does $\psi(4660)$ exist? Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 19

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Observation edecd9ec-003b-46d5-b04c-3877424af122 · inbound

Reconstructing rare particle source by femtoscopic correlations cites this paper.

Reconstructing rare particle source by femtoscopic correlations Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 51

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Observation 104e316b-5f98-493f-974a-35164b834e6f · inbound

Reconstructing rare particle source by femtoscopic correlations cites this paper.

Reconstructing rare particle source by femtoscopic correlations Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 51

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Observation 4da9f7cb-e41a-4b78-84b2-579aa9267ebe · inbound

Vector charmonium(-like) states in the energy range of 4.1-4.6 GeV cites this paper.

Vector charmonium(-like) states in the energy range of 4.1-4.6 GeV Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 16

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Observation c0685390-2ad1-4732-9049-831794684b51 · inbound

Searching for the pseudoscalar partner of $G(3900)$ via radiative $Y(4230)$ decays cites this paper.

Searching for the pseudoscalar partner of $G(3900)$ via radiative $Y(4230)$ decays Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 4

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Three-body unitary determination of the $f_1(1285)$ and $f_1(1420)$ pole positions cites this paper.

Three-body unitary determination of the $f_1(1285)$ and $f_1(1420)$ pole positions Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 18

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Observation 1a8cf532-407b-4926-9478-c9e1e7a86a11 · inbound

Nature of the newly found $\Omega(2109)$ cites this paper.

Nature of the newly found $\Omega(2109)$ Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 29

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Observation d9971f99-6583-4ba4-84d0-304cbb5e4052 · inbound

Spin Femtoscopy: A Framework for Revealing Genuine Spin Correlations cites this paper.

Spin Femtoscopy: A Framework for Revealing Genuine Spin Correlations Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 47

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Observation cc1a9880-283d-4505-8c59-cef1032fb0cd · inbound

Light tetraquark states with $J^{PC}=1^{--}$ from QCD sum rules cites this paper.

Light tetraquark states with $J^{PC}=1^{--}$ from QCD sum rules Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 20

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arxiv_id, observed 2026-07-03T10:07:55.730629Z

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Observation 05a07572-8e20-4c84-be42-b8b4e810da09 · inbound

The $D_{s1}(2460)$ and other open-charm $1^+$ states in relativistic chiral effective field theory cites this paper.

The $D_{s1}(2460)$ and other open-charm $1^+$ states in relativistic chiral effective field theory Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 28

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Observation 76e394f6-1ab8-4e29-88bf-d6f5fb6e948f · inbound

Quantum interference effects enhanced in $\pi^+p$ femtoscopic correlation functions cites this paper.

Quantum interference effects enhanced in $\pi^+p$ femtoscopic correlation functions Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 4

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Observation fb3f51d8-bfa3-44b2-9777-dd6b8615bfb4 · inbound

Compactness, mass spectra, and strong stability of singly heavy tetraquarks cites this paper.

Compactness, mass spectra, and strong stability of singly heavy tetraquarks Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 38

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local_arxiv, observed 2026-07-09T00:05:47.923855Z

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Observation b2b57680-2904-4e8c-b819-b0dccc7aeb2c · inbound

$KX(3872)$ interaction and correlation function cites this paper.

$KX(3872)$ interaction and correlation function Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 47

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local_arxiv, observed 2026-07-08T10:34:50.647454Z

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Observation 3e66c911-73d5-4033-8d09-100afeccee1a · inbound

Diffusion Monte Carlo study of deuteron-like fully light hexaquarks cites this paper.

Diffusion Monte Carlo study of deuteron-like fully light hexaquarks Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 21

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Source-reported events for the cited work

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Observation 7b19fec6-9e8b-4e2d-bf9e-a2304d9ae6fe · inbound

From hyperon--nucleon interactions to deuteron--hyperon femtoscopy cites this paper.

From hyperon--nucleon interactions to deuteron--hyperon femtoscopy Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 20

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Observation e60d6995-d9f2-4589-aa7a-c675799a1ac3 · inbound

An improved moment QCD sum rule cites this paper.

An improved moment QCD sum rule Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 12

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Source-reported events for the cited work

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Observation 8ed10c19-065a-499a-907c-d3cbe1fff3b7 · inbound

Decay constants of the two-pole $D_0^*(2300)$ cites this paper.

Decay constants of the two-pole $D_0^*(2300)$ Three ways to decipher the nature of exotic hadrons: multiplets, three-body hadronic molecules, and correlation functions

Reference 16

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