Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-01T12:34:59.939010Z
Paper Citation Record · LEDGER
As of 11 August 2026, this Paper Citation Record lists 74 of 74 outbound references and 0 inbound Pith citation observations for arXiv:2607.19519.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-01T12:34:59.939010Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-11T06:34:44.6726+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
74 of 74 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 92db43f8-2543-41d7-9ee6-167b3bdf8b9a · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Denoising Diffusion Probabilistic Models
Reference 1
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Observation 8c47cc24-b256-46be-9c47-da7457e77396 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Score-Based Generative Modeling through Stochastic Differential Equa- tions
Reference 2
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Observation a9b2105f-b8f7-41ed-ac9d-7aecc2eab153 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Flow Straight and Fast: Learning to Generate and Transfer Data with Rectified Flow
Reference 3
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Observation a922ed48-8334-4df2-ae59-98da3b8725ee · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Flow Matching for Generative Modeling
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Observation 81b30d85-758d-49d4-995c-d0e909176cc8 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Generative Flows on Discrete State-Spaces: Enabling Multimodal Flows with Applications to Protein Co-Design
Reference 5
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Observation 0615ebf3-a1a2-4dd3-93b3-9b73a1cf2611 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Discrete Flow Matching
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Observation b229a373-0a9a-4086-9fb8-a9a221d45269 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows SemlaFlow – Efficient 3D Molecular Generation with Latent Attention and Equivariant Flow Matching
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Observation 45e8428c-0bdb-405f-bd39-c32d149ad250 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Mixed Continuous and Categorical Flow Matching for 3D De Novo Molecule Generation
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Observation aa57d3a4-f02b-4f1c-9e9f-55211ae320d9 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Equivariant Diffusion for Molecule Generation in 3D
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Observation cf3b7811-ff6f-43f8-83e4-558c38991437 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Equivariant Flow Matching with Hybrid Probability Transport for 3D Molecule Generation
Reference 10
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Observation 9eed14a8-852a-4b19-b250-66adc7056569 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows MiDi: Mixed Graph and 3D Denoising Diffusion for Molecule Genera- tion
Reference 11
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Observation d3ac08c2-d2e5-4e6d-b10d-c8a615e8b74d · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows MUDiff: Unified Diffusion for Complete Molecule Generation
Reference 12
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Observation 37dd047b-0957-4dd2-bf62-299557b0bd19 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Geometry-complete diffusion for 3D molecule generation and optimization
Reference 13
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Observation da47d494-a527-4d14-838d-1d426df31a61 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Geometric-Facilitated Denoising Diffusion Model for 3D Molecule Generation
Reference 14
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Observation 70974281-f49a-4b69-8bfe-2f60e413f6e2 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Navigating the Design Space of Equivariant Diffusion-Based Generative Models for De Novo 3D Molecule Generation
Reference 15
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Observation 9452007b-5cb1-4493-8ddc-174cfc534373 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows TABASCO: A Fast, Simplified Model for Molecular Generation with Improved Physical Quality
Reference 16
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Observation 772710d1-7caf-44d9-981f-ab137dd8e213 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows FlowMol3: Flow Matching for 3D De Novo Small-Molecule Generation
Reference 17
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Observation ee02dd00-f8bf-4aaa-9929-80c75d257f9a · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Unresolved cited work
Reference 18
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Observation 62416fed-d99e-4aec-935e-441dbb7b09e3 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Generative molecular dynamics
Reference 19
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Observation afed3006-1fd1-420f-8a7f-8bad67249809 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Boltzmann generators: Sampling equilibrium states of many-body systems with deep learning
Reference 20
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Observation a3ea901f-10a9-4a0d-b342-e3a9be388ba0 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Transferable Boltzmann Generators
Reference 21
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Observation 7f5be28d-350a-4594-8b7c-12bb97be4840 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Torsional Diffusion for Molecular Conformer Generation
Reference 22
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Observation ee66afb0-7eb0-483a-bfa0-dd8e2d0e6724 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Scalable emulation of protein equilibrium ensembles with generative deep learning
Reference 23
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Observation 9e601837-57e2-40b6-be87-af384857040b · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Generation of conformational ensembles of small molecules via surrogate model-assisted molecular dynamics
Reference 24
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Observation 0fbe46e2-9986-4dd7-86d6-e7e08a691b66 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Neural Ordinary Differential Equations
Reference 25
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Observation 5bfaf303-bcc3-4c30-bef0-26efc187ad16 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Building Normalizing Flows with Stochas- tic Interpolants
Reference 26
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Observation 019a7494-c41f-4a7d-8992-60454ca32009 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Development and testing of a general amber force field
Reference 27
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Observation 0891d614-79e3-49ba-a04e-5d46f4df531e · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Neural Networks with Cheap Differential Opera- tors
Reference 28
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Observation 81fbe530-c29c-45c8-ae11-5b8f4e2960f2 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows HollowFlow: Efficient Sample Likelihood Eval- uation using Hollow Message Passing
Reference 29
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Observation b0c22cdd-6417-4373-b5f6-96b2fa26feb6 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Ensuring thermodynamic consistency with invertible coarse-graining
Reference 30
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Observation 5a38d667-4794-4be3-8c83-f1ea0bad3e76 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows The multiscale coarse-graining method. I. A rigorous bridge between atomistic and coarse-grained models
Reference 31
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Observation 011f9965-a4b6-427b-b6b8-06755ee3440a · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Optimization by Simulated Annealing
Reference 32
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Observation dbfadbbf-bf8e-4283-b095-f0f0a288077c · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows An interactive weighted Tchebycheff procedure for multiple objective programming
Reference 33
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Observation e9f93d2f-e5e6-478f-98c5-55a2c6787f64 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows FLOWR – Flow Matching for Structure- and Interaction-Aware De Novo Ligand Generation
Reference 34
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Observation 3a1a263b-d536-4bfe-8bb0-fcb490ca3b3f · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows GEOM, energy-annotated molecular confor- mations for property prediction and molecular generation
Reference 35
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Observation cb27383d-06e3-48d2-821d-b65ad4eea889 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Dominance statistics: Ordinal analyses to answer ordinal questions
Reference 36
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Observation 241bf4f7-5937-4778-9103-8de9c30da00b · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Combining ex- periments and simulations using the maximum entropy principle
Reference 37
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Observation 982dbac4-7708-4714-8d3d-ac6e20162323 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Combining experimental and simulation data of molecular processes via augmented Markov models
Reference 38
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Observation 4a1d011b-b0b1-4a10-9580-83f7f479772d · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Integrating molecular sim- ulation and experimental data: a Bayesian/maximum entropy reweighting approach
Reference 39
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Observation 4f65d620-f9a2-4874-b402-7df84ac7a2f4 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Rescuing off-equilibrium simulation data through dynamic experimental data with dynAMMo
Reference 40
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Observation 81cb5e6e-f008-4424-982c-450f751a7053 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows PropMolFlow: property-guided molecule generation with geometry- complete flow matching
Reference 41
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Observation e837d0a2-b88a-4049-9dce-83dacc14bcfe · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Scalable Equilibrium Sampling with Sequential Boltzmann Generators
Reference 42
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Observation 99e2cac8-1a3f-444a-9d4d-bba2099e20d3 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Scalable Boltzmann generators for equi- librium sampling of large-scale materials
Reference 43
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Observation bae88bd2-faf0-4ab3-9def-9cf25008a7d8 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Thermodynamic Interpolation: A Generative Approach to Molecular Thermodynamics and Kinetics
Reference 44
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Observation 5269fc99-4b64-4276-8c18-4455a1efe7c1 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Implicit Transfer Operator Learning: Multiple Time-Resolution Surrogates for Molecular Dynamics
Reference 45
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Observation 607edc50-f55e-4e7e-961e-ec964cf0fc1a · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Transferable generative models bridge femtosecond to nanosecond time-step molecular dynamics
Reference 46
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Observation cb9243cb-cde7-4184-a165-9f62977f33cd · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Boltzmann priors for Implicit Transfer Operators
Reference 47
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Observation 0e2352c1-2a2a-41a6-8c41-1971a61718b5 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Protein Language Model Embeddings Improve Generalization of Implicit Transfer Operators
Reference 48
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Observation 804faf88-9880-45aa-8d2a-21640870d840 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Timewarp: Transferable Acceleration of Molecular Dynamics by Learning Time-Coarsened Dynamics
Reference 49
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Observation 3f25db2e-d556-4411-bd4b-8d75813b479a · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows High-Temperature Equation of State by a Perturbation Method. I. Non- polar Gases
Reference 50
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Observation e18b98da-74e6-4e96-923f-8a497f3dfb84 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Statistical Mechanics of Fluid Mixtures
Reference 51
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Observation fb5c640f-485a-41af-bdfb-c125da2c29c9 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Chapter 4 Alchemical Free Energy Calculations: Ready for Prime Time?
Reference 52
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Observation 6af43320-7884-45f5-b1fe-4f8ce38fea09 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Multistate approaches in computational protein design
Reference 53
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Observation 09658ec3-3c10-40f5-99fe-1862d256dfba · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Ensemble-based enzyme design can recapitulate the effects of laboratory directed evolution in silico
Reference 54
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Observation 74e7734e-5d24-49de-9e61-e544d37764b7 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Robust deep learning–based protein sequence design using ProteinMPNN
Reference 55
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Observation ad0480f2-27f0-4873-a884-b384df3b2b05 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Design of stimulus-responsive two-state hinge proteins
Reference 56
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Observation 3dfb9455-2edd-4cf4-9255-c00c8e3898e8 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Deep learning–guided design of dynamic proteins
Reference 57
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Observation 4ed5d715-ff85-4a16-94b0-5d45b4ae9fd4 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Computational design of conformation-biasing mutations to alter pro- tein functions
Reference 58
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Observation 55682976-5a81-4541-ab49-c0867b74314d · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Unresolved cited work
Reference 59
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Observation bf3bfa38-cc7b-443e-b55f-9f91d8e0017c · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Design of intrinsically disordered protein variants with diverse structural properties
Reference 60
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Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Generalized design of se- quence–ensemble–function relationships for intrinsically disordered proteins
Reference 61
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Observation 042cbedc-9b18-40d3-879d-e6d5e921e426 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows GEOM-Drugs revisited: Toward more chemically accurate benchmarks for 3D molecule generation
Reference 62
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Observation 2c31249b-77e8-4453-8d26-3ec750cc533e · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Cooling Schedules for Optimal Annealing
Reference 63
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Observation 6c5dbd5e-6528-4140-ad9a-2620941f8e62 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows The pseudo-marginal approach for efficient Monte Carlo computations
Reference 64
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Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Adam: A Method for Stochastic Optimization
Reference 65
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Reference 66
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Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Version Re- lease_2025_03_2
Reference 67
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Observation c44b2ff7-ebe2-4f61-9493-5a663f0f4361 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Replica Monte Carlo Simulation of Spin-Glasses
Reference 68
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Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Modulations in restricted amide rotation by steric induced conformational trapping
Reference 69
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Observation 68426a5e-1aab-46aa-ac74-96363a1a5158 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Unresolved cited work
Reference 70
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Observation a63b1972-8b89-48ee-af6d-f14a808c8db2 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Structure-based Drug Design with Equivariant Diffusion Models
Reference 71
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Observation 67931cb6-b43b-47cc-b281-71663010114f · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows Exploring Discrete Flow Matching for 3D De Novo Molecule Generation
Reference 72
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Observation 55a61f10-ab44-4e5f-bdd6-5a0f48db5287 · outbound
Boltzmann-Expected Molecular Design with Decoupled Annealing Flows OpenMM 7: Rapid development of high performance algorithms for molecular dynamics
Reference 73
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Boltzmann-Expected Molecular Design with Decoupled Annealing Flows PyTorch 2: Faster Machine Learning Through Dynamic Python Bytecode Transformation and Graph Compilation
Reference 74
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No inbound Pith citation observations are available.