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Paper Citation Record · LEDGER

Designing tight frames for quantum computing

As of 14 August 2026, this Paper Citation Record lists 31 of 31 outbound references and 0 inbound Pith citation observations for arXiv:2607.27247.

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

pith.paper-citation-record.v1
2607.27247 v1

Coverage vector

measured 31 of 31 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-01T03:05:26.138058Z

measured 31 of 31 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-13T06:32:02.005865+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

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Reference resolution

31 of 31 outbound references displayed

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Outbound references

Observation f3d509ca-f7bb-4513-8905-4a23791634ee · outbound

This paper cites A class of nonharmonic fourier series,.

Designing tight frames for quantum computing A class of nonharmonic fourier series,

Reference 1

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Observation d9b1821e-ff93-4468-b736-d43257e46927 · outbound

This paper cites Theory of communication,.

Designing tight frames for quantum computing Theory of communication,

Reference 2

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Observation 5327ef3f-2265-476e-9c46-3476b7b10f6c · outbound

This paper cites The art of frame theory,.

Designing tight frames for quantum computing The art of frame theory,

Reference 3

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source=pdf_text observed=2026-08-01T03:05:26.022877Z digest=sha256:a608a4152351fa34c7a66f9c5a91b3cd209660d8ed5c83364cc245fad902d0e1

Observation b350d994-a825-46fe-b2a4-7310ddb0fee3 · outbound

This paper cites Optimal tight frames and quantum measurement,.

Designing tight frames for quantum computing Optimal tight frames and quantum measurement,

Reference 4

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Observation 1b2b8ff1-4b03-4381-bbff-93722b3f762b · outbound

This paper cites Notes on naimark’s dilation theorem,.

Designing tight frames for quantum computing Notes on naimark’s dilation theorem,

Reference 5

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Observation d43352ab-90ed-4f9e-93d1-cd1e1f141bf7 · outbound

This paper cites Finite normalized tight frames,.

Designing tight frames for quantum computing Finite normalized tight frames,

Reference 6

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Observation b50b6c29-8f2e-4c78-a3ae-0b3e6982caf4 · outbound

This paper cites Introduction to quantum information processing,.

Designing tight frames for quantum computing Introduction to quantum information processing,

Reference 7

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Observation d7234ada-2f3b-44ef-b8f1-6cfe17616946 · outbound

This paper cites Symmetric informa- tionally complete quantum measurements,.

Designing tight frames for quantum computing Symmetric informa- tionally complete quantum measurements,

Reference 8

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Observation 6e5c15c8-aaa1-4ce4-8070-6ff610365876 · outbound

This paper cites Discrimination of quantum states,.

Designing tight frames for quantum computing Discrimination of quantum states,

Reference 9

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Observation 71795ba4-4b8c-443b-afbd-db0a91aee611 · outbound

This paper cites Universal algorithm for optimal estimation of quantum states from finite ensembles via realizable generalized measurement,.

Designing tight frames for quantum computing Universal algorithm for optimal estimation of quantum states from finite ensembles via realizable generalized measurement,

Reference 10

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Observation 1abfda59-c150-4de1-9201-4f484df60544 · outbound

This paper cites Two-qubit bell inequality for which positive operator-valued measurements are relevant,.

Designing tight frames for quantum computing Two-qubit bell inequality for which positive operator-valued measurements are relevant,

Reference 11

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Observation 178faf8a-7108-46e3-85cd-ec04a3135fa6 · outbound

This paper cites Device-independent certification of a nonprojective qubit mea- surement,.

Designing tight frames for quantum computing Device-independent certification of a nonprojective qubit mea- surement,

Reference 12

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Observation 9e308c5a-f05f-404c-a0d5-808afa8de005 · outbound

This paper cites Quantum cryptography using any two nonorthogonal states,.

Designing tight frames for quantum computing Quantum cryptography using any two nonorthogonal states,

Reference 13

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Observation 7c56c266-994a-46fe-98f9-f1d516261243 · outbound

This paper cites Entanglement cost of generalised measurements,.

Designing tight frames for quantum computing Entanglement cost of generalised measurements,

Reference 14

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Observation 69e43ef1-e44b-4f3f-89ec-024d21c1f40a · outbound

This paper cites Steinberg,Representation Theory of Finite Groups: An Introductory Approach.

Designing tight frames for quantum computing Steinberg,Representation Theory of Finite Groups: An Introductory Approach

Reference 15

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Observation 80fad94a-8a04-4265-a834-b926d9a36ffb · outbound

This paper cites Group frames,.

Designing tight frames for quantum computing Group frames,

Reference 16

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Observation 58eb05e8-4b44-44a8-96eb-1b4b413e4244 · outbound

This paper cites SMT vs NMT: A Comparison over Hindi & Bengali Simple Sentences.

Designing tight frames for quantum computing SMT vs NMT: A Comparison over Hindi & Bengali Simple Sentences

Reference 17

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Observation 705088b9-079c-455c-bbf9-cc509febe18f · outbound

This paper cites Fuchs,Abelian Groups, ser.

Designing tight frames for quantum computing Fuchs,Abelian Groups, ser

Reference 18

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Observation ae97026c-c1f0-4233-a3e8-97be5c0df8fe · outbound

This paper cites Breakdown of the spectator concept in low-electron-energy resonant decay processes.

Designing tight frames for quantum computing Breakdown of the spectator concept in low-electron-energy resonant decay processes

Reference 19

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Observation ddbaa4df-74bc-4811-8f94-824eb5766fb8 · outbound

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Designing tight frames for quantum computing Unresolved cited work

Reference 20

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Observation 468e986e-51ff-4117-b256-556293a63d26 · outbound

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Designing tight frames for quantum computing Unresolved cited work

Reference 21

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Observation 7385879d-4592-45cb-b2b3-a633c165d538 · outbound

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Designing tight frames for quantum computing Unresolved cited work

Reference 22

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Observation 08a09c0d-5c9e-499f-ba7d-645ab485bfac · outbound

This paper cites The fundamental theorem for finite abelian groups: A brief history and proof,.

Designing tight frames for quantum computing The fundamental theorem for finite abelian groups: A brief history and proof,

Reference 23

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Observation 8074c9a2-1c94-4d09-a397-1aacea0b29a5 · outbound

This paper cites On the unitary equivalence between cyclic harmonic frames,.

Designing tight frames for quantum computing On the unitary equivalence between cyclic harmonic frames,

Reference 24

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Observation 9415e631-a3b3-4799-a70b-00d7a0f7e5f2 · outbound

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Designing tight frames for quantum computing Unresolved cited work

Reference 25

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Observation 67fee1b1-0c36-4c8d-972f-af8d01429003 · outbound

This paper cites Multipartite entanglement,.

Designing tight frames for quantum computing Multipartite entanglement,

Reference 26

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Observation e93f0b51-eaee-4d9d-a635-ba18da000fe1 · outbound

This paper cites The modern tools of quantum mechanics: A tutorial on quantum states, measurements, and operations,.

Designing tight frames for quantum computing The modern tools of quantum mechanics: A tutorial on quantum states, measurements, and operations,

Reference 27

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Designing tight frames for quantum computing Unresolved cited work

Reference 28

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Observation aed331c1-f50a-4d03-be2a-086e24d798df · outbound

This paper cites Treil,Linear Algebra Done Wrong.

Designing tight frames for quantum computing Treil,Linear Algebra Done Wrong

Reference 29

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Observation d2ddb725-99c8-4193-ad4a-001ec4afe464 · outbound

This paper cites Pathak,Elements of Quantum Computation and Quantum Communication.

Designing tight frames for quantum computing Pathak,Elements of Quantum Computation and Quantum Communication

Reference 30

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Observation 379fabc4-f775-4a38-947d-13ccd34ef60d · outbound

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Designing tight frames for quantum computing Unresolved cited work

Reference 31

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Pith citing papers

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