{"id":721453,"date":"2021-01-27T13:55:20","date_gmt":"2021-01-27T21:55:20","guid":{"rendered":"https:\/\/www.microsoft.com\/en-us\/research\/?post_type=msr-research-item&p=721453"},"modified":"2021-01-27T13:55:20","modified_gmt":"2021-01-27T21:55:20","slug":"visibility-of-noisy-quantum-dot-based-measurements-of-majorana-qubits","status":"publish","type":"msr-research-item","link":"https:\/\/www.microsoft.com\/en-us\/research\/publication\/visibility-of-noisy-quantum-dot-based-measurements-of-majorana-qubits\/","title":{"rendered":"Visibility of noisy quantum dot-based measurements of Majorana qubits"},"content":{"rendered":"

Measurement schemes of Majorana zero modes (MZMs) based on quantum dots (QDs) are of current interest as they provide a scalable platform for topological quantum computation. In a coupled qubit-QD setup we calculate the dependence of the charge of the QD and its differential capacitance on experimentally tunable parameters for both 2-MZM and 4-MZM measurements. We quantify the effect of noise on the measurement visibility by considering $1\/f$ noise in detuning, tunneling amplitudes or phase. We find that on- or close-to-resonance measurements are generally preferable and predict, using conservative noise estimates, that noise coupling to the QDs is not a limitation to high-fidelity measurements of topological qubits.<\/p>\n","protected":false},"excerpt":{"rendered":"

Measurement schemes of Majorana zero modes (MZMs) based on quantum dots (QDs) are of current interest as they provide a scalable platform for topological quantum computation. In a coupled qubit-QD setup we calculate the dependence of the charge of the QD and its differential capacitance on experimentally tunable parameters for both 2-MZM and 4-MZM measurements. 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