From d3fa0e946c2b88ec0534353e09d704ed73712d1a Mon Sep 17 00:00:00 2001 From: hachem Date: Sun, 22 Sep 2024 10:13:14 +0200 Subject: update readme to name change --- README.md | 10 +++++----- 1 file changed, 5 insertions(+), 5 deletions(-) (limited to 'README.md') diff --git a/README.md b/README.md index 346a43b..6be9b86 100644 --- a/README.md +++ b/README.md @@ -1,10 +1,10 @@ -# μ -μ, pronounced $\text{/mj'uː/ ('mew')}$ and not $\text{/mŷː/ ('mee')}$, is powerful quantum computational toolkit based on the idea of simulation of quantum circuits on classical computers. +# ψ +ψ, is powerful quantum computational toolkit based on the idea of simulation of quantum circuits on classical computers. ## Project Prospects -- `libmu`: A dependency free library featuring an enviroment to write and design quantum circuits, used by all sub-projects in μ. Fitted with a series of bindings to allow use in different languages. -- `muc`: Pronounced $\text{/mjˈuː sˈiː/ ('mew'-'see')}$, an [OpenQASM](https://openqasm.com/) compiler allowing you to write quantum programs and have them be complied to native executables ran on classical computers using an [LLVM](https://llvm.org/) backend. -- `mu`: An application allowing you to design quantum circuits graphically instead of programatically. Using both `libmu` and `muc`, you are capable of designing your own quantum gates by the use of an [OpenQASM]([https://openqasm.com/](https://openqasm.com/)) gate descriptor. +- `libpsi`: A dependency free library featuring an enviroment to write and design quantum circuits, used by all sub-projects in ψ. Fitted with a series of bindings to allow use in different languages. +- `qasmc`: An [OpenQASM](https://openqasm.com/) compiler allowing you to write quantum programs and have them be complied to native executables ran on classical computers using an [LLVM](https://llvm.org/) backend. +- `psi-gui`: An application allowing you to design quantum circuits graphically instead of programatically. Using both `libpsi` and `qasmc`, you are capable of designing your own quantum gates by the use of an [OpenQASM]([https://openqasm.com/](https://openqasm.com/)) gate descriptor. ## Disclaimer This project is a large and ongoing effort, and I try my hardest to deliver the advertised feature, some may not arrive as planned or according to any scheduled timeline. The development process is subject to change based on technical challenges, research priorities and the simultaneous management of multiple on-going projects, spanning both computer science, physics and unrelated domains. -- cgit v1.3