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I am getting confused about the meaning of the term ancilla qubit I edited the initial question to show an example of how i use the qaoa function. It's use seems to vary a lot in different situations
Ancilla Tilia
I want to remove the ancilla qubits from my quantum circuit in qiskit A controlled hadamard gate applied based on a comparison of the sum qubits using qiskit's integercomparatorgate My mwe below contains four qubits
I want to keep psi0 and psi1 qubits and remove ancillas anc0, anc.
For instance, the cnot can be implemented using joint zz measurement and joint xx measurement and using an additional ancilla qubit To generate the clifford group, it would be sufficient to have similar gadgets for s and h How does one achieve a hadamard gate just using. It is a known trick in quantum computing to use additional ancilla qubits and uncomputation to construct efficient quantum circuits
I wonder, are there some rigorous results that estimate how big. In the above linked paper, the authors were able to greatly reduce the circuit depth required for implementing an arbitrary quantum state by introducing an ancilla register with the same size as the system register and performing controlled swaps between them This seems to be similar to a lot of width vs depth tradeoff people observe in. The ancilla tells us about the errors, not the underlying logical state
In general if we entangle and measure the ancilla state also with spin states during the computation, our computation is botched because our superposition is lost by measuring the ancilla
Thus our ancilla must be entangled in a manner that doesn't disturb the original qubits What properties do we usually prepare and measure the ancilla qubits. Currently, i am implementing a cx gate in stim with the help of lattice surgery, and i am a bit confused why there are multiple ways of implementing it In my circuit, the adder operation sets up a qtg state
It's essentially the same as qiskit's weightedadder class, but with a minor tweak
