# Two qubits in one transmon -- QEC without ancilla hardware

**Authors:** Alexander Simm, Shai Machnes, Frank K. Wilhelm

arXiv: 2302.14707 · 2023-08-01

## TL;DR

This paper demonstrates theoretically and through numerical optimization that two qubits can be stored and manipulated within a single transmon using higher energy levels, potentially doubling qubit capacity without extra hardware.

## Contribution

It introduces a method to encode and control two qubits in one transmon via higher energy levels, enabling quantum gates without additional hardware overhead.

## Key findings

- Complete set of universal gates realized through optimized control pulses
- Potential to double qubit capacity in superconducting circuits
- Applicable to error correction and high-connectivity quantum networks

## Abstract

We show that it is theoretically possible to use higher energy levels for storing and controlling two qubits within a superconducting transmon. This is done by identifying energy levels as product states between multiple effecitve qubits. As a proof of concept we realise a complete set of gates necessary for universal computing by numerically optimising control pulses for single qubit gates on each of the qubits, entangling gates between the two qubits in one transmon, and an entangling gate between two qubits from two coupled transmons. The optimisation considers parameters which could make it possible to validate this experimentally. With these control pulses it is in principle possible to double the number of available qubits without any overhead in hardware. The additional qubits could be used in algorithms which need many short-living qubits such as syndrom qubits in error correction or by embedding effecitve higher connectivity in qubit networks.

## Full text

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## Figures

17 figures with captions in the complete paper: https://tomesphere.com/paper/2302.14707/full.md

## References

26 references — full list in the complete paper: https://tomesphere.com/paper/2302.14707/full.md

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Source: https://tomesphere.com/paper/2302.14707