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Paper Citation Record · LEDGER

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis

As of 22 August 2026, this Paper Citation Record lists 45 of 45 outbound references and 0 inbound Pith citation observations for arXiv:2607.28200.

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

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2607.28200 v1

Coverage vector

measured 45 of 45 reference resolution

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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

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Reference resolution

45 of 45 outbound references displayed

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Outbound references

Observation 55a3c8ef-0093-499a-91b8-d6ac4d81562e · outbound

This paper cites Nanoscale Thermal Transport.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Nanoscale Thermal Transport

Reference 1

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Observation f8cd92c4-a9da-4c8c-be90-e66a8239a762 · outbound

This paper cites Emerging Challenges and Materials for Thermal Man- agement of Electronics.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Emerging Challenges and Materials for Thermal Man- agement of Electronics

Reference 2

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Observation 6429969d-4568-4a79-838b-ab228103a251 · outbound

This paper cites Near-field ra- diative thermal transport: From theory to experiment.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Near-field ra- diative thermal transport: From theory to experiment

Reference 3

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Observation 211653c7-a121-4f60-b6a6-0eb43e655b70 · outbound

This paper cites Measurement Techniques for Thermal Conductivity and Interfacial Thermal Con- ductance of Bulk and Thin Film Materials.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Measurement Techniques for Thermal Conductivity and Interfacial Thermal Con- ductance of Bulk and Thin Film Materials

Reference 4

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Observation 23b1f1c5-c03e-401f-9696-9841861733db · outbound

This paper cites Interfacial Thermal Resis- tance: Past, Present, and Future.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Interfacial Thermal Resis- tance: Past, Present, and Future

Reference 5

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Observation 575f3cbf-6631-48d8-8152-dfdcd82050bd · outbound

This paper cites Thermal Conductivity Measurement from 30 to 750 K: The 3ω Method.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Thermal Conductivity Measurement from 30 to 750 K: The 3ω Method

Reference 6

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Observation 6b6d4d46-6dd2-48df-a956-61d46971c297 · outbound

This paper cites MEASURINGTHETHERMALCONDUCTIVITYOFTHINFILMS: 3 OMEGA AND RELATED ELECTROTHERMAL METHODS.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis MEASURINGTHETHERMALCONDUCTIVITYOFTHINFILMS: 3 OMEGA AND RELATED ELECTROTHERMAL METHODS

Reference 7

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Observation 10581b60-ae89-4d4c-a259-af702bd86764 · outbound

This paper cites Scanning Thermal Microscopy.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Scanning Thermal Microscopy

Reference 8

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Observation 35f5f789-b5a3-4ea9-a77b-8e72eb80320b · outbound

This paper cites Thermometry and Thermal Transport in Micro/Nanoscale Solid-State Devices and Structures.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Thermometry and Thermal Transport in Micro/Nanoscale Solid-State Devices and Structures

Reference 9

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Observation 756ceebe-e6c2-42c7-b428-f927e82362f9 · outbound

This paper cites Thermal Transport Measurements of Nanostruc- tures Using Suspended Micro-Devices.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Thermal Transport Measurements of Nanostruc- tures Using Suspended Micro-Devices

Reference 10

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Observation 42136901-ba46-487e-af91-acde16053832 · outbound

This paper cites Big MEMS for Thermal Mea- surement.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Big MEMS for Thermal Mea- surement

Reference 11

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Observation c14469da-ce36-4131-81fc-8a60bc421ff5 · outbound

This paper cites Big-MEMS for high thermal conductivity measurement.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Big-MEMS for high thermal conductivity measurement

Reference 12

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Observation a3004804-14ef-4a4d-b6b7-2e5830f7c92f · outbound

This paper cites Raman Spectroscopy for Thermal Transport Characterization: Prin- ciples, Techniques, and Applications.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Raman Spectroscopy for Thermal Transport Characterization: Prin- ciples, Techniques, and Applications

Reference 13

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Observation 2933982b-1270-4426-a7d3-23abbe88c27b · outbound

This paper cites Raman- Based Nanoscale Thermal Transport Characterization: A Critical Review.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Raman- Based Nanoscale Thermal Transport Characterization: A Critical Review

Reference 14

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Observation 843c8c63-915d-4f4a-9918-73c1a634634b · outbound

This paper cites Tutorial: Time-domain Thermore- flectance (TDTR) for Thermal Property Characterization of Bulk and Thin Film Materials.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Tutorial: Time-domain Thermore- flectance (TDTR) for Thermal Property Characterization of Bulk and Thin Film Materials

Reference 15

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Observation face9fe2-b8dd-48df-99b4-cdd622c1a2bf · outbound

This paper cites An Instrumentation Guide to Measuring Thermal Conductiv- ity Using Frequency Domain Thermoreflectance (FDTR).

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis An Instrumentation Guide to Measuring Thermal Conductiv- ity Using Frequency Domain Thermoreflectance (FDTR)

Reference 16

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Observation 3123de10-77c4-4a0a-b79b-35af1415ece2 · outbound

This paper cites Nanoscale Thermal Transport. II. 2003-2012.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Nanoscale Thermal Transport. II. 2003-2012

Reference 17

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Observation 2243fc42-8cdb-4de3-9d3e-8d5112b7d7c5 · outbound

This paper cites Spatially Resolved Thermoreflectance Techniques for Thermal Conductivity Measurements from the Nanoscale to the Mesoscale.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Spatially Resolved Thermoreflectance Techniques for Thermal Conductivity Measurements from the Nanoscale to the Mesoscale

Reference 18

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Observation 8ee6b69f-e1bc-4f8e-b289-e173c740cffc · outbound

This paper cites Ultrahigh Thermal Con- ductivity in Isotope-Enriched Cubic Boron Nitride.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Ultrahigh Thermal Con- ductivity in Isotope-Enriched Cubic Boron Nitride

Reference 19

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Observation b2cccae6-4806-40c1-affc-5e3a79876943 · outbound

This paper cites Metallicθ-Phase Tantalum Nitride Has a Thermal Conductivity Triple That of Copper.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Metallicθ-Phase Tantalum Nitride Has a Thermal Conductivity Triple That of Copper

Reference 20

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Observation a02c1af1-21a1-4a81-ad61-610e217c0738 · outbound

This paper cites A Frequency-Domain Ther- moreflectance Method for the Characterization of Thermal Properties.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis A Frequency-Domain Ther- moreflectance Method for the Characterization of Thermal Properties

Reference 21

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Observation 13f28ebf-090b-4227-a1a7-8600b071e60e · outbound

This paper cites Unusual High Thermal Conductivity in Boron Arsenide Bulk Crystals.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Unusual High Thermal Conductivity in Boron Arsenide Bulk Crystals

Reference 22

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Observation 8ba206cc-58ba-4180-8156-32f78b289151 · outbound

This paper cites Thermal Transport in a 2D Amorphous Material.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Thermal Transport in a 2D Amorphous Material

Reference 23

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Observation 8abc28aa-21cc-4bbb-a986-1a554e296d16 · outbound

This paper cites Thermal Transport in Rhombohedral Boron Nitride.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Thermal Transport in Rhombohedral Boron Nitride

Reference 24

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Observation f20d118e-45a9-4dc2-9bb1-95fb183263f1 · outbound

This paper cites Observation of Solid-State Bidirectional Thermal Conductivity Switching in Antiferroelectric Lead Zirconate (PbZrO3).

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Observation of Solid-State Bidirectional Thermal Conductivity Switching in Antiferroelectric Lead Zirconate (PbZrO3)

Reference 25

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Observation a1dd7f7c-89c5-4d20-8ad6-a487ab2d3d9f · outbound

This paper cites Electric Field–Dependent Phonon Spectrum and Heat Conduction in Ferroelectrics.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Electric Field–Dependent Phonon Spectrum and Heat Conduction in Ferroelectrics

Reference 26

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Observation 5042f04b-5afa-4dc2-994b-9fb2363f448a · outbound

This paper cites Measurements of Thermal Resistance Across Buried Interfaces with Frequency-Domain Thermore- flectance and Microscale Confinement.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Measurements of Thermal Resistance Across Buried Interfaces with Frequency-Domain Thermore- flectance and Microscale Confinement

Reference 27

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Observation 3781243c-f559-4f76-9461-f63777d61751 · outbound

This paper cites Ultrahigh Thermal Conduc- tance across Superlubric Interfaces in Twisted Graphite.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Ultrahigh Thermal Conduc- tance across Superlubric Interfaces in Twisted Graphite

Reference 28

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Observation a443bebc-3a3b-4214-885f-f006f18e1b1c · outbound

This paper cites Anomalous Enhancement of Ther- mal Conduction across Twisted van Der Waals Heterointerfaces.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Anomalous Enhancement of Ther- mal Conduction across Twisted van Der Waals Heterointerfaces

Reference 29

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Observation 7282bc8d-5ae5-4e41-956e-8cff424831b0 · outbound

This paper cites Analysis of Heat Flow in Layered Structures for Time-Domain Thermoreflectance.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Analysis of Heat Flow in Layered Structures for Time-Domain Thermoreflectance

Reference 30

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Observation 34e1e15e-74c9-4ce8-bf14-615d5011b37f · outbound

This paper cites Time-Domain Thermoreflectance (TDTR) Mea- surements of Anisotropic Thermal Conductivity Using a Variable Spot Size Ap- proach.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Time-Domain Thermoreflectance (TDTR) Mea- surements of Anisotropic Thermal Conductivity Using a Variable Spot Size Ap- proach

Reference 31

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Observation c798c1cc-a27b-479e-91bc-fb826e93fe57 · outbound

This paper cites A New Spatial-DomainThermoreflectanceMethodtoMeasureaBroadRangeofAnisotropic in-Plane Thermal Conductivity.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis A New Spatial-DomainThermoreflectanceMethodtoMeasureaBroadRangeofAnisotropic in-Plane Thermal Conductivity

Reference 32

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Observation 5fc2be10-301f-49e1-b51d-68b3e26c68d1 · outbound

This paper cites an unresolved cited work.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Unresolved cited work

Reference 33

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Observation 94d99492-04bf-47f3-b180-e9303acba1ed · outbound

This paper cites Towards End-to-End Automa- tion of AI Research.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Towards End-to-End Automa- tion of AI Research

Reference 34

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Observation 9abd4e68-9678-431b-8b91-74074d8666be · outbound

This paper cites Science Acceleration and Accessibility with Self-Driving Labs.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Science Acceleration and Accessibility with Self-Driving Labs

Reference 35

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This paper cites Evaluating Large Language Model Agents for Automation of Atomic Force Microscopy.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Evaluating Large Language Model Agents for Automation of Atomic Force Microscopy

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This paper cites J 3SPM AI: An Integrated Open-Source Platform for AI-assisted Image Analysis and Image-Guided Workflows in Scanning Probe Microscopy.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis J 3SPM AI: An Integrated Open-Source Platform for AI-assisted Image Analysis and Image-Guided Workflows in Scanning Probe Microscopy

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This paper cites Machine Learning-Based Data Pro- cessing Technique for Time-Domain Thermoreflectance (TDTR) Measurements.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Machine Learning-Based Data Pro- cessing Technique for Time-Domain Thermoreflectance (TDTR) Measurements

Reference 38

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This paper cites Estimating Depth-Directional Thermal Conductivity Profiles Using Neural Network with Dropout in Frequency-Domain Thermoreflectance.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Estimating Depth-Directional Thermal Conductivity Profiles Using Neural Network with Dropout in Frequency-Domain Thermoreflectance

Reference 39

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This paper cites Wide-Field Bond Quality Evaluation Using Frequency Domain Thermoreflectance with Deep Neural Network Feature Reconstruction.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Wide-Field Bond Quality Evaluation Using Frequency Domain Thermoreflectance with Deep Neural Network Feature Reconstruction

Reference 40

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Observation 3d1ee3e6-1d7a-46b9-99d3-2b354c9c83a5 · outbound

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Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Unresolved cited work

Reference 41

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This paper cites May 2025.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis May 2025

Reference 42

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Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Unresolved cited work

Reference 43

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Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Uncertainty Analysis of Ther- moreflectance Measurements

Reference 44

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Observation 91d45d84-8569-4b79-8603-84feed626dc6 · outbound

This paper cites Version 0.1.x.

Vibe-FDTR: An agent-oriented framework for reproducible frequency-domain thermoreflectance data analysis Version 0.1.x

Reference 45

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