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Paper Citation Record · LEDGER

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder

As of 13 August 2026, this Paper Citation Record lists 65 of 65 outbound references and 0 inbound Pith citation observations for arXiv:2608.00160.

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

pith.paper-citation-record.v1
2608.00160 v1

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measured 65 of 65 reference resolution

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measured 65 of 65 standing notices

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65 of 65 outbound references displayed

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Outbound references

Observation 4468494c-7c2c-46f2-a16e-53e174a0211d · outbound

This paper cites (9), and the expected utility in Eq.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder (9), and the expected utility in Eq

Reference 1

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Observation 1c1b0930-2361-42f5-929e-9417e6eed7e6 · outbound

This paper cites The expected utility in the form Eq.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder The expected utility in the form Eq

Reference 2

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Observation f6c10368-2f6b-4a96-88a5-fc41c94e2f2d · outbound

This paper cites The former two we study for the lin- ear system sizes of up toL= 20andL= 32, respectively, while the latter two are amenable to the lattice sizesL= 256 andL= 64, respectively.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder The former two we study for the lin- ear system sizes of up toL= 20andL= 32, respectively, while the latter two are amenable to the lattice sizesL= 256 andL= 64, respectively

Reference 3

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Observation 3efb4adc-5d8a-40c6-9db4-5040104fdc81 · outbound

This paper cites 9.Second momentC (2) c and domain-wall entropyI c.The data are presented along the radial linet A =t B =π/4−t rad.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder 9.Second momentC (2) c and domain-wall entropyI c.The data are presented along the radial linet A =t B =π/4−t rad

Reference 4

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Observation 0633af47-7823-4cfd-a203-74c220aa856a · outbound

This paper cites Therefore, for a specific configurations, we computeC s as a contraction of the tensor network closely following Ref.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Therefore, for a specific configurations, we computeC s as a contraction of the tensor network closely following Ref

Reference 5

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Observation bc3f96c6-276d-48f8-82a6-c8868b613377 · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 6

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Observation 18b315bc-4889-40a7-a4a3-e4a4dbad59a7 · outbound

This paper cites For concrete- ness, we assume that the logical state is|1⟩ L, and the logical information is restored by the decoder if⟨ ˆMz⟩dec >0.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder For concrete- ness, we assume that the logical state is|1⟩ L, and the logical information is restored by the decoder if⟨ ˆMz⟩dec >0

Reference 7

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Observation bdde9cc2-9a2c-4deb-80ea-95f3c7de7272 · outbound

This paper cites This choice of utility function is analytically intractable due to the nonlinearity of theθ-function.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder This choice of utility function is analytically intractable due to the nonlinearity of theθ-function

Reference 8

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Observation 7a9d3801-3443-495f-9ea5-0455f68e175b · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 9

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Observation 79c4a48f-8e79-41dd-be6a-7cf4dc61cc5a · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 10

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Observation 367cb058-8a7f-46f3-91df-fd949f7fe97b · outbound

This paper cites Leibfried, M.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Leibfried, M

Reference 11

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Observation 90eec9a4-bee0-44c3-80f7-0898cab549ba · outbound

This paper cites Giovannetti, S.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Giovannetti, S

Reference 12

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Observation 1bb992b7-e393-4739-ace2-58e4194ace12 · outbound

This paper cites Giovannetti, S.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Giovannetti, S

Reference 13

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Observation 7c01ec59-90e1-44f3-98b8-74fd9a322862 · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 14

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Observation 312cc1fc-e4aa-4a5a-81e3-6d0405626fc0 · outbound

This paper cites Hillery, V.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Hillery, V

Reference 15

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Observation 65a284c3-d10d-474a-951f-405399ba8c0f · outbound

This paper cites Cleve, D.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Cleve, D

Reference 16

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Observation c391d871-dd7e-4e9f-93d7-cce02420b048 · outbound

This paper cites Chen, A.-N.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Chen, A.-N

Reference 17

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Observation 11bbaaa0-95b6-4fd5-9ad3-ac92f8f1a567 · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 18

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Observation 6e996684-1433-4fea-91f5-fd5003763bab · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 19

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Observation bcfd5c06-477b-4393-8a43-91083db8080a · outbound

This paper cites de Bone, R.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder de Bone, R

Reference 20

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Observation b7c9fabd-9722-4e2d-a223-603b71918f3f · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 21

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Observation 7c8786e4-e31e-4731-ba6d-e43299d34f56 · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 22

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Observation 4d3bded8-6f49-4e8c-9afc-f8cde9155022 · outbound

This paper cites Guillaud and M.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Guillaud and M

Reference 23

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Observation ae83d527-f1b9-40c7-a499-a386afb9f1bc · outbound

This paper cites Takeda, A.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Takeda, A

Reference 24

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Observation 1e7301f3-665c-4a5f-872a-0edde40dd596 · outbound

This paper cites Bergamaschi and Y.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Bergamaschi and Y

Reference 25

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Observation 841e70c0-1415-4c33-92c6-7d52cf402f6d · outbound

This paper cites Putterman, K.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Putterman, K

Reference 26

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Observation 89e2e297-26dd-4431-8797-1f26d1a8a6a0 · outbound

This paper cites Bravyi, M.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Bravyi, M

Reference 27

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Observation 7a4bb01f-b28a-47db-bab0-27bbb553b765 · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 28

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Observation 2c54ee58-1ec6-421c-b10b-ada2eafa3464 · outbound

This paper cites Preskill, Quantum Computing in the NISQ era and beyond, Quantum2, 79 (2018).

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Preskill, Quantum Computing in the NISQ era and beyond, Quantum2, 79 (2018)

Reference 29

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Observation 0ec7ccaa-48c2-4e8e-9243-86467c5c28ca · outbound

This paper cites Raussendorf and H.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Raussendorf and H

Reference 30

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Observation 6ead521f-3b2f-4492-bf64-980e5e757802 · outbound

This paper cites Efficiently preparing Schr\"odinger's cat, fractons and non-Abelian topological order in quantum devices.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Efficiently preparing Schr\"odinger's cat, fractons and non-Abelian topological order in quantum devices

Reference 31

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Observation c800e380-4991-4c16-8dfa-50f13e02400f · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 32

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Observation 023b943f-b739-4a16-b66e-0e3eceaebbab · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 33

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Observation 78ed60e3-fab3-4d04-98bc-608ef4705804 · outbound

This paper cites Decoding Measurement-Prepared Quantum Phases and Transitions: from Ising model to gauge theory, and beyond.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Decoding Measurement-Prepared Quantum Phases and Transitions: from Ising model to gauge theory, and beyond

Reference 34

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Observation 384451f7-8d54-4d01-ac81-2526c7740ec3 · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 35

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Observation 75647e72-a1ce-4eb0-a48d-e9c72237770c · outbound

This paper cites Dennis, A.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Dennis, A

Reference 36

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Observation 922b4a27-5b64-4510-b200-342902c4d074 · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 37

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Observation 502008e9-e7e6-4d19-897e-b0d6a5e05bda · outbound

This paper cites deMarti iOlius, P.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder deMarti iOlius, P

Reference 38

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Observation c898a0fd-9094-4522-8d1e-bad40d57614c · outbound

This paper cites Kolmogorov, Blossom V: A New Implementation of a Min- imum Cost Perfect Matching Algorithm, Mathematical Pro- gramming Computation1, 43 (2009).

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Kolmogorov, Blossom V: A New Implementation of a Min- imum Cost Perfect Matching Algorithm, Mathematical Pro- gramming Computation1, 43 (2009)

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Observation 63d060f6-87d8-4467-b552-5f23c55da4e7 · outbound

This paper cites Higgott and C.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Higgott and C

Reference 40

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source=pdf_text observed=2026-08-04T01:18:13.874863Z digest=sha256:8fc5a0f979b9e168b86f37f7996f80633a3c9937a41d7ce0c9c7581adcd6c765

Observation 3539397b-26ae-4916-8e23-d6f838d7e1d7 · outbound

This paper cites Nishimori, Exact results and critical properties of the Ising model with competing interactions, Journal of Physics C: Solid State Physics13, 4071 (1980).

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Nishimori, Exact results and critical properties of the Ising model with competing interactions, Journal of Physics C: Solid State Physics13, 4071 (1980)

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Observation d40c0ff4-04ed-48f4-bcd5-00436a796109 · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 42

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source=pdf_text observed=2026-08-04T01:18:14.137623Z digest=sha256:f2745ae3282d5ddf9fee6d35afda1b5e8654423631927a62fbb02a6eef5b27d3

Observation 6b4dcaa7-d321-41e4-bfbf-4ba84105c83f · outbound

This paper cites Bravyi, M.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Bravyi, M

Reference 43

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source=pdf_text observed=2026-08-04T01:18:14.245013Z digest=sha256:5f0007c4aa77e210aef1497a1132afd009892d4007fb92aee9db0b44cc286653

Observation 5348eda9-3c9c-46ca-9919-b434d10aba76 · outbound

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Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 44

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source=pdf_text observed=2026-08-04T01:18:14.359445Z digest=sha256:044b0739bf00672941c1aa5e4265d1f4f39b980ede9e949dd4516d7aa5742431

Observation 291946ba-cd62-4f4b-8eaa-94f97b515dde · outbound

This paper cites It corresponds to the utility function UF (τ,σ) =θ 1 N P i σiτi −1 , whose Heaviside nonlinear- ity renders it analytically intractable.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder It corresponds to the utility function UF (τ,σ) =θ 1 N P i σiτi −1 , whose Heaviside nonlinear- ity renders it analytically intractable

Reference 45

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source=pdf_text observed=2026-08-04T01:18:14.453472Z digest=sha256:f6317c9002aae89914a6696838f9c7bd8ddab290420b7d567a78d2cc30a1a671

Observation b896eb1f-acf0-4799-94a5-c258de0aac29 · outbound

This paper cites Quadratic Unconstrained Binary Optimization Problem Preprocessing: Theory and Empirical Analysis.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Quadratic Unconstrained Binary Optimization Problem Preprocessing: Theory and Empirical Analysis

Reference 46

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Observation 84237f2f-5bcf-4cb3-94b0-bf815e94c075 · outbound

This paper cites Meinerz, C.-Y.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Meinerz, C.-Y

Reference 47

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Observation 78249d46-8a55-4751-a748-8f9f370c20c9 · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 48

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source=pdf_text observed=2026-08-04T01:18:14.833910Z digest=sha256:6dc21e4a2bccce94b7c2433454dea42cc644318134611fcd5a5d4b9efd1dfffd

Observation ebd355d5-185b-4d30-ba52-bd425b6d7052 · outbound

This paper cites Eastin and E.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Eastin and E

Reference 49

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source=pdf_text observed=2026-08-04T01:18:14.924746Z digest=sha256:204871e3a7ab55f8e4bae51eda46319f0b62e7e042a1691c057362342b844f55

Observation 463765b0-0c1d-4c17-afb8-14e975f50794 · outbound

This paper cites Bluvstein, S.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Bluvstein, S

Reference 50

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source=pdf_text observed=2026-08-04T01:18:15.048248Z digest=sha256:901dfa653566fb2a483c3dee268b7620a7e8384d0a47e48579fde46d2c1efc3f

Observation 434e6a06-62c7-49e0-8817-968585b07483 · outbound

This paper cites Horsman, A.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Horsman, A

Reference 51

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source=pdf_text observed=2026-08-04T01:18:15.172457Z digest=sha256:71310000b866295afcecadbf8ff783f8a953d5382e3a76d6777f2af01998003f

Observation 7313243c-51d9-4980-90fd-5f7ef48fffb3 · outbound

This paper cites Litinski, A Game of Surface Codes: Large-Scale Quantum Computing with Lattice Surgery, Quantum3, 128 (2019).

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Litinski, A Game of Surface Codes: Large-Scale Quantum Computing with Lattice Surgery, Quantum3, 128 (2019)

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source=pdf_text observed=2026-08-04T01:18:15.342887Z digest=sha256:2ada44e8ce8339bb3618742cb2e2daa2d748af6c186e69e471a1a4f943a02d70

Observation 35b66926-9666-4379-9db4-360246ce8248 · outbound

This paper cites Optimal De- coding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Optimal De- coding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder

Reference 53

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Observation e0caadc4-68d5-4d90-87bb-6c1c48aad001 · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 54

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source=pdf_text observed=2026-08-04T01:18:15.527356Z digest=sha256:d232911c795372b4c8ba0fe7bf8cc2fd8ebb26e6f75b87175de0806210783d2e

Observation ed15a916-c74b-45e1-9322-0d41cc7d1d4f · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 55

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source=pdf_text observed=2026-08-04T01:18:15.634748Z digest=sha256:2c01ad0bab7a7151c166110da32f5fc0dd8f7b3c688f54972e6594df50b632ea

Observation c525ccad-bc52-4c91-88a6-e2d77fcc93b6 · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 56

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source=pdf_text observed=2026-08-04T01:18:15.729388Z digest=sha256:94818342bdc6c243acc6bbf37d8d8febe539f9f0980d3e262a47da3362731f6e

Observation 0f5ac1dd-ac4b-4c63-9968-e333cbec3f9a · outbound

This paper cites Kager, M.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Kager, M

Reference 57

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source=pdf_text observed=2026-08-04T01:18:15.892643Z digest=sha256:9b330f273d822b1fda5b8eaa65fb4f97e2ca18b0b6ca7e5977da15f1ae16fa95

Observation a90a5c5f-3643-43e7-92b0-c7c9df14e7b1 · outbound

This paper cites Chelkak, D.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Chelkak, D

Reference 58

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source=pdf_text observed=2026-08-04T01:18:16.017189Z digest=sha256:84eede8c82dbe903086abc87299fba9b69f0592b8e0cbd3b868e8029f846a2ee

Observation b741a950-4369-4746-87c9-13bea7097dd7 · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 59

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source=pdf_text observed=2026-08-04T01:18:16.081449Z digest=sha256:1e47235a33231a18e788ed84e26e1c65d20de50a21de9164093595154ae4a238

Observation 665b8e83-04a9-42d3-aabd-9f68f38bf603 · outbound

This paper cites Krislock, J.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Krislock, J

Reference 60

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source=pdf_text observed=2026-08-04T01:18:16.227948Z digest=sha256:4531a4a3e724c16564d98e7a21e7271ec09d8d7f48acf82ffb74b6ab740366ba

Observation 6088a945-167c-4070-8814-b8698942f78f · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 61

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source=pdf_text observed=2026-08-04T01:18:16.286862Z digest=sha256:39b823a62562e2e3b3bde382288976501adca3d2033485be21a2a9af5e07d6eb

Observation c872a554-e871-43b4-932f-d1251fe3b461 · outbound

This paper cites Wan, X.-D.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Wan, X.-D

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source=pdf_text observed=2026-08-04T01:18:16.365360Z digest=sha256:b8f128b112c79adfc07f22302f488155b0a5a4fae10b54863993a7d3d9b07b53

Observation 2a5165e1-033d-4f24-b5f8-1a8f8709cd6f · outbound

This paper cites Nishimori Threshold Estimation for Bayesian Inference and $\mathbb{Z}_q$ Surface Code Decoding.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Nishimori Threshold Estimation for Bayesian Inference and $\mathbb{Z}_q$ Surface Code Decoding

Reference 63

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source=pdf_text observed=2026-08-04T01:18:16.515063Z digest=sha256:c7a7e12ee3d286f992580a6c1b7135aee8192efdaa7238f07dc623eaeeb20f89

Observation d849b46d-a006-4635-b17b-e053c64a46cc · outbound

This paper cites Roser, H.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Roser, H

Reference 64

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source=pdf_text observed=2026-08-04T01:18:16.665706Z digest=sha256:c4585d57da1080c0325c8e7c29373ba1a67da13ddb86849a6284ef5334a27853

Observation b813960e-e92e-4514-8d85-2ce9fe559ded · outbound

This paper cites an unresolved cited work.

Optimal Decoding for Measurement-Based GHZ State Preparation: The Maximum-Utility Decoder Unresolved cited work

Reference 65

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source=pdf_text observed=2026-08-04T01:18:16.795568Z digest=sha256:8303153f3998df9b91a4a4b152f86b0239de3896e3819a7c675ff7650cbc8e74

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