com.quantum-expectations/quantum-expectations

MCPcommunityattivo
v0.6.0com.quantum-expectationsUnknownAggiornato 1 mesi fa

Quantum error-correction feasibility: success probability, qubit overhead, records, trends.

Stato dell’endpointattivo
verificato 7 giorni fa · 594 ms
100 % degli ultimi 5 controlli hanno raggiunto questo endpoint
Funziona in
ClaudeCursorCopilotChatGPTGemini

Dedotto dai trasporti dichiarati da questo annuncio (streamable-http). Un client che non compare qui non è escluso — semplicemente Forge non è in grado di confermarlo.

Indicizzato automaticamente da fonti pubbliche. Non ancora verificato dal suo sviluppatore su Forge.Rivendica questo annuncio →
1 mesi faUltimo aggiornamento
Pacchetto
Autorecom.quantum-expectations
LicenzaUnknown
Versione0.6.0
Fontemcp-registry
Stato di fiducia
B
60/100Buono
✓Presente nell’indice di Forge+10/10
—Identità del publisher verificata+0/30
→ Publisher: per questo annuncio non risulta alcun repository, quindi `forge publish` non può verificare la proprietà automaticamente. Usa «Rivendica questo annuncio» qui sopra — Forge li esamina a mano.
—Verifica del dominio+0/10
→ Al momento non disponibile per questo tipo di annuncio — oggi il controllo del dominio viene eseguito solo per i pacchetti su npm, quindi questa riga non può ancora essere ottenuta qui, indipendentemente da cosa sia ospitato sul dominio.
✓Analisi prompt injection · pulita+30/30
✓Analisi offuscamento / esfiltrazione · pulita+20/20
StatoIndicizzato dalla community
PublisherNon verificato
FirmaNon firmato
Dominio—
Provenienza—
DipendenzeNon verificate
Superficie di strumenti12 strumenti · nessuno privilegiato
Analisi di sicurezza✓ Pulitovlive · 27 g faQuanto è efficace questa analisi?
ValutazioniNessuna
Indicizzato3 lug 2026

La verifica conferma l’identità del publisher (la proprietà del repo), non la sicurezza del codice. L’analisi di sicurezza copre i CVE noti e gli script di installazione sospetti.

Strumenti

12 strumenti · nessuno privilegiato
Osservato in tempo reale dall’endpoint del fornitore27d ago

Letto da un vero handshake MCP initialize → tools/list verso l’endpoint dichiarato. Nessuno strumento è stato invocato — tools/list è la chiamata di introspezione in sola lettura che il protocollo prevede a questo scopo. Riflette ciò che il server annunciava in quel momento; un endpoint ospitato non è vincolato ad alcuna versione e può cambiare senza preavviso.

  • https://www.quantum-expectations.com/api/mcp12 strumenti · 487 ms
compute_expectationGiven a quantum circuit (2-qubit error rate p, qubit count n, depth d), compute the effective error rate, success probability, and optional surface-code or qLDPC overhead. The response is self-describing (formulas, assumptions, caveats, glossary, SOTA hardware, historic series with source URLs) so…

Given a quantum circuit (2-qubit error rate p, qubit count n, depth d), compute the effective error rate, success probability, and optional surface-code or qLDPC overhead. The response is self-describing (formulas, assumptions, caveats, glossary, SOTA hardware, historic series with source URLs) so…

ParametroTipoDescrizione
qubitErrorRatenumberPer-gate 2-qubit error rate p, in (0, 0.1]. Supply exactly one of qubitErrorRate or hardwareId.
hardwareIdstringAlias for qubitErrorRate: resolves to the 2-qubit error rate of the given SOTA hardware entry from list_current_quantum_computers. Supply exactly one of qubitE…
numQubits*integer—
compDepth*integer—
useErrorCorrectionboolean—
errorCorrectionCodestringEither "surface" (default when useErrorCorrection=true) or a qLDPC code id from list_qldpc_codes. "surface-code" is accepted as an alias for "surface".
distanceSurfaceCodenumberSurface code distance: odd integer in [3, 31]. Required when useErrorCorrection=true and the surface code is selected; ignored when a qLDPC code is selected.
verbosebooleanWhen false, omits hardwareContext, formulas, assumptions, caveats, glossary, examples, and exampleProblems from the response — leaving only modelVersion, scena…
compute_required_error_rateInverse of compute_expectation. Given a circuit (numQubits, compDepth) and an acceptable effective error rate, return the required per-gate logical error rate (requiredLogicalErrorRatePerGate: a number, or null only when the target is genuinely unreachable; never 0) and, for every EC option (no-EC,…

Inverse of compute_expectation. Given a circuit (numQubits, compDepth) and an acceptable effective error rate, return the required per-gate logical error rate (requiredLogicalErrorRatePerGate: a number, or null only when the target is genuinely unreachable; never 0) and, for every EC option (no-EC,…

ParametroTipoDescrizione
numQubits*integerNumber of logical qubits n in the circuit.
compDepth*integerCircuit depth d (sequential 2-qubit gate layers). Accepts values up to 1e13.
acceptableErrorRatePercent*numberUpper bound on the effective error rate, as a percent. Default website convention is 33 (i.e. ≤33% effective error is "acceptable").
compute_fault_tolerant_resourcesGiven an algorithm stated as (numLogicalQubits, tCount) and a physical error rate (or hardwareId), derive the full surface-code + magic-state-distillation footprint from the general laws of the Litinski lattice-surgery cost model (no per-scenario constants): distillation factory choice, tile layout…

Given an algorithm stated as (numLogicalQubits, tCount) and a physical error rate (or hardwareId), derive the full surface-code + magic-state-distillation footprint from the general laws of the Litinski lattice-surgery cost model (no per-scenario constants): distillation factory choice, tile layout…

ParametroTipoDescrizione
numLogicalQubits*integerNumber of logical data qubits the algorithm needs.
tCount*integerTotal number of T gates (magic states consumed). Convention: state Toffoli-counted algorithms in T gates before calling (1 Toffoli ≈ 4–7 T depending on decompo…
qubitErrorRatenumberPhysical 2-qubit error rate p in (0, 0.1]. Supply exactly one of qubitErrorRate or hardwareId.
hardwareIdstringAlias for qubitErrorRate: resolves to the error rate of a SOTA hardware entry.
targetSuccessProbabilitynumberTarget end-to-end success probability. The failure budget (1 − target) is split evenly between T-state error and logical (memory/surgery) error, matching Litin…
dataBlockstringData-block layout (Litinski §2): compact = fewest qubits, fast = shortest time per T gate.
cycleTimeSecondsnumberSurface-code cycle time in seconds. Default 1 µs (Litinski convention; Google 2024 measured 1.1 µs on superconducting hardware). Trapped-ion/neutral-atom cycle…
compare_hardware_scenariosRun the same circuit against multiple current SOTA hardware entries in one call so an agent can rank platforms without N sequential compute_expectation calls. Defaults to every entry in list_current_quantum_computers when hardwareIds is omitted.

Run the same circuit against multiple current SOTA hardware entries in one call so an agent can rank platforms without N sequential compute_expectation calls. Defaults to every entry in list_current_quantum_computers when hardwareIds is omitted.

ParametroTipoDescrizione
numQubits*integer—
compDepth*integer—
useErrorCorrectionboolean—
errorCorrectionCodestringEither "surface" (default when useErrorCorrection=true) or a qLDPC code id. "surface-code" is accepted as an alias for "surface".
distanceSurfaceCodenumberSurface code distance: odd integer in [3, 31]. Required when useErrorCorrection=true and the surface code is selected; ignored when a qLDPC code is selected.
hardwareIdsarraySubset of QUANTUM_COMPUTERS ids to compare. Omit to compare every entry.
list_current_quantum_computersReturn the representative-entry table of current SOTA quantum computers (id, hardware type, physical qubit count, 2-qubit error rate). Same data that powers the website's "Current Quantum Computers" table.

Return the representative-entry table of current SOTA quantum computers (id, hardware type, physical qubit count, 2-qubit error rate). Same data that powers the website's "Current Quantum Computers" table.

Per questo strumento non è stato pubblicato alcuno schema di input.

list_hardware_timingsReturn per-platform gate-cycle timings (2Q gate time, readout time, in SI seconds) plus the testbed they were measured on (`representativeDevice`) and the native 2Q gate name, with source URLs. Joins list_current_quantum_computers via `hardwareType`, but the numbers are BEST-CASE DEMONSTRATIONS fro…

Return per-platform gate-cycle timings (2Q gate time, readout time, in SI seconds) plus the testbed they were measured on (`representativeDevice`) and the native 2Q gate name, with source URLs. Joins list_current_quantum_computers via `hardwareType`, but the numbers are BEST-CASE DEMONSTRATIONS fro…

Per questo strumento non è stato pubblicato alcuno schema di input.

compute_quantum_volume_rateCompute the Quantum Volume Rate (QV/second): QVR = V_Q / (log2(V_Q) * t_2Q + t_meas). First-order estimate of how fast a device prepares one QV-sized square circuit (one native 2Q gate per QV layer + one end-of-circuit measurement). OVERSTATES achievable rate: real compilation inflates the 2Q-gate…

Compute the Quantum Volume Rate (QV/second): QVR = V_Q / (log2(V_Q) * t_2Q + t_meas). First-order estimate of how fast a device prepares one QV-sized square circuit (one native 2Q gate per QV layer + one end-of-circuit measurement). OVERSTATES achievable rate: real compilation inflates the 2Q-gate…

ParametroTipoDescrizione
quantumVolume*integerQuantum volume V_Q (integer ≥ 2, e.g. 64 for a depth-log2=6 square circuit).
t2QSeconds*numberNative 2-qubit gate time in seconds (e.g. 60e-9 for a 60 ns CZ).
tMeasurementSeconds*numberEnd-of-circuit measurement/readout time in seconds (e.g. 5e-3 for 5 ms).
fit_historic_seriesFit a log-linear trend (ln(value) = slope * year + intercept) to one historic series — fidelity or qubit-count — for one hardware type. Atomic primitive: compose with list_current_quantum_computers, compute_required_error_rate, or your own modelling to answer "when might hardware reach X?". residua…

Fit a log-linear trend (ln(value) = slope * year + intercept) to one historic series — fidelity or qubit-count — for one hardware type. Atomic primitive: compose with list_current_quantum_computers, compute_required_error_rate, or your own modelling to answer "when might hardware reach X?". residua…

ParametroTipoDescrizione
seriesType*stringWhich historic series to fit: "fidelity" (2-qubit gate error rate) or "qubit-count" (physical qubits).
hardwareType*stringHardware platform as used by get_historic_series.
targetValuenumberOptional. When supplied, the response includes yearAtTargetValue — the extrapolated year the fit crosses this value (error rate for fidelity series, qubit coun…
list_example_algorithmsReturn the curated list of example quantum algorithms with published resource estimates (qubit count, depth/gate count, source paper URL). Useful for comparing what algorithms need vs. what hardware can deliver. Each entry carries a `provenance` field: 'published-circuit' means the figure is reprod…

Return the curated list of example quantum algorithms with published resource estimates (qubit count, depth/gate count, source paper URL). Useful for comparing what algorithms need vs. what hardware can deliver. Each entry carries a `provenance` field: 'published-circuit' means the figure is reprod…

Per questo strumento non è stato pubblicato alcuno schema di input.

list_qldpc_codesReturn the catalog of supported qLDPC codes (id, label, family, n, k, d, circuitLevelDistance, ancilla counts, roundsPerLogicalOp, threshold, fitCoefficients {c0, c1, c2}, logicalErrorExponent [alpha = d_circ/2], source URLs, provenance, caveats). The per-block, per-syndrome-cycle logical error rat…

Return the catalog of supported qLDPC codes (id, label, family, n, k, d, circuitLevelDistance, ancilla counts, roundsPerLogicalOp, threshold, fitCoefficients {c0, c1, c2}, logicalErrorExponent [alpha = d_circ/2], source URLs, provenance, caveats). The per-block, per-syndrome-cycle logical error rat…

Per questo strumento non è stato pubblicato alcuno schema di input.

get_historic_seriesReturn the full historic time series — either two-qubit gate error rates ("fidelity") or physical qubit counts ("qubit-count") — broken down by hardware type. Each datapoint carries a source URL. Use this to extrapolate trends — "when might hardware reach X?" — or pair with fit_historic_series for…

Return the full historic time series — either two-qubit gate error rates ("fidelity") or physical qubit counts ("qubit-count") — broken down by hardware type. Each datapoint carries a source URL. Use this to extrapolate trends — "when might hardware reach X?" — or pair with fit_historic_series for…

ParametroTipoDescrizione
seriesType*string"fidelity" → 2-qubit gate error rates; "qubit-count" → physical qubit counts.
get_agent_briefReturn the plain-text site brief describing scope, assumptions, the honesty clause, and the API contract. Mirrors the /agent.txt document served by the website.

Return the plain-text site brief describing scope, assumptions, the honesty clause, and the API contract. Mirrors the /agent.txt document served by the website.

Per questo strumento non è stato pubblicato alcuno schema di input.

12 strumenti su 12 hanno pubblicato una descrizione.

I nomi e le descrizioni degli strumenti sono scritti dal publisher e mostrati alla lettera come testo inerte. Sono le stringhe che un client MCP passa a un modello, quindi Forge vi cerca schemi di prompt injection — ogni rilievo compare insieme all’analisi di sicurezza qui sopra. «Privilegiato» è una corrispondenza di parola chiave sul nome dello strumento, non una verifica di ciò che fa: un nome innocuo può comunque fare qualsiasi cosa.

Descrizione

Quantum error-correction feasibility: success probability, qubit overhead, records, trends.

Parole chiave
mcp
Alternative
Confronto delle superfici di strumenti…

Nessuna copertura delle dipendenze

Questa voce non pubblica alcun pacchetto npm, quindi Forge non ha un albero delle dipendenze per essa. È una lacuna di copertura, non l'affermazione che non abbia dipendenze.