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Qubit T1 Relaxation

Pe=Pe₀exp(−t/T1): Calculate the qubit T1 attenuation based on the input, and provide local sensitivity curves and data export.

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Zero-temperature Markov amplitude decay, no thermal excitation.

Qubit T1 Relaxation: uses and methods

Pe=Pe₀exp(−t/T1): Calculate the qubit T1 attenuation based on the input, and provide local sensitivity curves and data export.

Applicable scope and calculation boundary

Zero-temperature Markov amplitude decay, no thermal excitation.

model and reference method

Pe=Pe₀exp(−t/T1)

model version: 1.1.0. The results are used for scientific research, exploration and teaching, please interpret according to the model conditions.

input parameters

time(µs)
Value range: 0 – 1000000000
T1(µs)
Value range: 0.000001 – 1000000000
Initial excitation probability
Value range: 0 – 1

How to use

  1. Load the example or enter data that matches the field description.
  2. Confirm units and models, run calculations and check diagnostics.
  3. Export charts, tables or results packages and record model versions.

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commercial application case

Industry Application · Independent Reproduction Example

Qubit T1 Relaxation

In the initial calculation or experimental design of solutions related to qubit T1 attenuation, compare the impact of input changes on the results; review with original data and applicable conditions.

Public industry reference: University of Waterloo · Institute for Quantum Computing

The institution’s public research directions include: Quantum computing, algorithms, experiments and quantum information. This link serves as a portal for field background and extended learning.

View product or organization original information

on this site

  1. Load the default example of Qubit T1 Relaxation and check time、T1、Initial excitation probability and its units.
  2. is calculated using Pe=Pe₀exp(−t/T1), and the results are compared after adjusting a single parameter.
  3. checks applicable conditions and diagnostics, and exports numerical tables, charts, and model versions for review.

Deliverables

Pe=Pe₀exp(−t/T1): Calculate the qubit T1 attenuation based on the input, and provide local sensitivity curves and data export. delivers parameter records, calculation charts, and reproducible JSON result packages.

needs to be checked before landing

Zero-temperature Markov amplitude decay, no thermal excitation.。

case is compiled for public industry purposes, and the reproduction steps are independent examples of this site; it does not mean that the above-mentioned institutions use or endorse this site, nor does it cite customer benefits that have not been publicly verified. The

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recommended by universities and research institutions

Quantum Science

The following is the recommended reading order of this website organized by direction relevance, public research resources and learning portals. The number is the serial number recommended by the editor, not QS, THE or paper measurement ranking; it does not represent the overall strength of the institution.

  1. 01

    University of Waterloo · Institute for Quantum Computing

    Canada

    Quantum computing, algorithms, experiments and quantum information。

    official website link accessibility check: 2026-10-03
  2. 02

    QuTech · TU Delft / TNO

    Netherlands

    Qubits, Quantum Computing and Network Experiments。

    official website link accessibility check: 2026-10-03
  3. 03

    IBM Quantum

    International Separation on the

    Quantum hardware, software stack and open learning resources。

    official website link accessibility check: 2026-10-03

catalog compiled on 2026-10-03. Link accessibility does not equate to verification of the latest papers, admissions, or program status; please check the institution's official website for specific research teams and opportunities.

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