Coder Social home page Coder Social logo

shanto268 / ocs_transmon_qubit Goto Github PK

View Code? Open in Web Editor NEW
5.0 1.0 3.0 10.41 MB

Design an OCS qubit with certain properties for fabrication through Lincoln Lab, MIT.

Jupyter Notebook 99.95% Python 0.05%
qiskit ansys epr fabrication hfss klayout ocs qiskit-metal qubit resonator

ocs_transmon_qubit's Introduction

Goal:

Design an OCS qubit with $\frac{E_j}{E_c} \approx 20$ for fabrication through Lincoln Lab, MIT.

Constraints:

  • Resonator frequency between 4 - 12 GHz (due to circulator, amplifiers and mixers)
  • $\omega_{res} \approx \omega_{03}$ of qubit
  • $\omega_{03} = 3 \omega_{01} - 2 * α$
  • $\omega_{01}$ needs to be between 2 and 6 GHz

Workflow:

  1. Isolate qubit + claw design from standard candle qubit design a. JJ is not an element in Ansys so might need to use Lumped Element Linear Inductor with the correct $L_j$ value instead

  2. Simulate (EPR) the qubit+ claw design to get $E_c , \omega_{01}, \alpha$

    a. Ensure hyperparameters meet LL SQUILL Foundry requirements

    b. Claws as port

    c. No other components on chip

    d. Be careful of mesh parameters

     - maximum meshing size should be at least half of smallest feature
     - Define mesh resolution for separate components according to the rule ^
    

    e. Calculate $E_j$

     - $\hbar \omega_{01} = \sqrt(8 E_j E_c) - E_c $
    

    f. Change simulation parameters (i.e. qubit + claw + JJ parameters) to get $E_j/E_c \approx 20$

  3. Compute $\omega_{03}$

  4. Simulate (S21) a claw + CPW resonator + 2-port transmission line from the standard candle qubit design

    a. Get $\omega_{res}$ - Fit with lflPython/fitTools/Resonator.py tool

    b. Change resonator length to get $\omega_{res} = \omega_{03}$

  5. Choose 5 physical parameters of the qubit that have $E_j/E_c \in (10,30)$ (steps 1 and 2)

  6. Get $\omega_{res}$ for these new qubits (steps 3 and 4)

  7. Adjust the GDS file with the final chip design to comply with LL SQUILL Submission Requirements

    a. Get the JJ length for each qubit

     - $L_j$ from $E_j$
    
     - `L_j = junction_area * critical_current_density`
    
     - `Junction_area = JJ_length * JJ_width`
    

ocs_transmon_qubit's People

Contributors

lfl-lab avatar shanto268 avatar

Stargazers

 avatar  avatar  avatar  avatar  avatar

Watchers

 avatar

Forkers

lfl-lab chloequan

Recommend Projects

  • React photo React

    A declarative, efficient, and flexible JavaScript library for building user interfaces.

  • Vue.js photo Vue.js

    🖖 Vue.js is a progressive, incrementally-adoptable JavaScript framework for building UI on the web.

  • Typescript photo Typescript

    TypeScript is a superset of JavaScript that compiles to clean JavaScript output.

  • TensorFlow photo TensorFlow

    An Open Source Machine Learning Framework for Everyone

  • Django photo Django

    The Web framework for perfectionists with deadlines.

  • D3 photo D3

    Bring data to life with SVG, Canvas and HTML. 📊📈🎉

Recommend Topics

  • javascript

    JavaScript (JS) is a lightweight interpreted programming language with first-class functions.

  • web

    Some thing interesting about web. New door for the world.

  • server

    A server is a program made to process requests and deliver data to clients.

  • Machine learning

    Machine learning is a way of modeling and interpreting data that allows a piece of software to respond intelligently.

  • Game

    Some thing interesting about game, make everyone happy.

Recommend Org

  • Facebook photo Facebook

    We are working to build community through open source technology. NB: members must have two-factor auth.

  • Microsoft photo Microsoft

    Open source projects and samples from Microsoft.

  • Google photo Google

    Google ❤️ Open Source for everyone.

  • D3 photo D3

    Data-Driven Documents codes.