Multi-frequency Spin Manipulation Using Rapidly Tunable Superconducting Coplanar Waveguide Microresonators
arXiv:1705.02413 · doi:10.1063/1.4993930
Abstract
In this work, we demonstrate the use of frequency-tunable superconducting NbTiN coplanar waveguide microresonators for multi-frequency pulsed electron spin resonance (ESR) experiments. By applying a bias current to the center pin, the resonance frequency (7.6 GHz) can be continuously tuned by as much as 95 MHz in 270 ns without a change in the quality factor of 3000 at 2K. We demonstrate the ESR performance of our resonators by measuring donor spin ensembles in silicon and show that adiabatic pulses can be used to overcome magnetic field inhomogeneities and microwave power limitations due to the applied bias current. We take advantage of the rapid tunability of these resonators to manipulate both phosphorus and arsenic spins in a single pulse sequence, demonstrating pulsed double electron-electron resonance (DEER). Our NbTiN resonator design is useful for multi-frequency pulsed ESR and should also have applications in experiments where spin ensembles are used as quantum memories.
5 pages, 4 figures
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- Circuit Quantum Electrodynamics with a Spin Qubit
- Quantum electrodynamics near a photonic band-gap
- Purcell-enhanced single-photon emission from nitrogen-vacancy centers coupled to a tunable microcavity
- Electron Spin Resonance at the Level of 10000 Spins Using Low Impedance Superconducting Resonators
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Cited by in corpus (10)
- Storing quantum information in spins and high-sensitivity ESR
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- Tunable Nb superconducting resonators based upon a Ne-FIB-fabricated constriction nanoSQUID
- Tuning high-Q superconducting resonators by magnetic field reorientation
- Multiresonator quantum memory-interface
- In-situ amplification of spin echoes within a kinetic inductance parametric amplifier
- Spin echo silencing using a current-biased frequency-tunable resonator
- SKIFFS: Superconducting Kinetic Inductance Field-Frequency Sensors for Sensitive Magnetometry in Moderate Background Magnetic Fields
- Superconducting microwave oscillators as detectors for ESR spectroscopy
- Tunable superconducting resonators via on-chip control of local magnetic field