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Merge pull request #68 from isi-usc-edu/max-radin/df-qpe-underscore
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Adding underscore to DF QPE; fixes #53
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jp7745 authored Dec 11, 2024
2 parents 8095874 + bb12e66 commit 05df62e
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{
"$schema": "https://raw.githubusercontent.com/isi-usc-edu/qb-gsee-benchmark/main/schemas/performance_metrics.schema.0.0.1.json",
"performance_metrics_uuid": "32034c2e-2319-4da8-8d99-65d0a3807291",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"creation_timestamp": "2024-12-10T12:17:57.483531+00:00",
"ml_metrics": {
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460 changes: 230 additions & 230 deletions scripts/aggregated_solver_labels_2024-12-09-16-35.csv

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460 changes: 230 additions & 230 deletions scripts/aggregated_solver_labels_2024-12-10-07-10.csv

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134 changes: 67 additions & 67 deletions scripts/artifact.resource_estimate_data.csv

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2 changes: 1 addition & 1 deletion scripts/compute_all_LREs_script.py
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Expand Up @@ -196,7 +196,7 @@ def get_lqre(

solver_details = {
"solver_uuid": config["solver_uuid"],
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": config["algorithm_description"],
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460 changes: 230 additions & 230 deletions scripts/solver_labels.DF QPE.f2d73e1f-3058-43c4-a634-b6c267c84ff1.csv

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"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Original file line number Diff line number Diff line change
Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -240,7 +240,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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Expand Up @@ -44,7 +44,7 @@
"compute_hardware_type": "quantum_computer",
"solver_details": {
"solver_uuid": "f2d73e1f-3058-43c4-a634-b6c267c84ff1",
"solver_short_name": "DF QPE",
"solver_short_name": "DF_QPE",
"compute_hardware_type": "quantum_computer",
"algorithm_details": {
"algorithm_description": "Double factorized QPE resource estimates based on methodology of arXiv:2406.06335. Note that the truncation error is not included in the error bounds and that the SCF compute time is not included in the preprocessing time. Ground-state overlap is taken to be that estimated for the dominant CSF as estimated by DMRG and that this DMRG runtime is not included in the classical compute costs.",
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