Excitation and coherent control of spin qudit modes in silicon carbide at room temperature
Возбуждение и когерентное управление модами спиновых кубитов (квдит) в карбиде кремния при комнатной температуре
2019-04-11
SCID: 54.1/8ekfhafs
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coherent controlmultipole spin dynamicssilicon carbidespin quditsvacancy-related spins
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Abstract (AI)
One of the challenges in the field of quantum sensing and information processing is to selectively address and coherently manipulate highly homogeneous qubits subject to external perturbations. Here, we present room-temperature coherent control of high-dimensional quantum bits, the so-called qudits, associated with vacancy-related spins in silicon carbide enriched with nuclear spin-free isotopes. In addition to the excitation of a spectrally narrow qudit mode at the pump frequency, several other modes are excited in the electron spin resonance spectra whose relative positions depend on the external magnetic field. We develop a theory of multipole spin dynamics and demonstrate selective quantum control of homogeneous spin packets with sub-MHz spectral resolution. Furthermore, we perform two-frequency Ramsey interferometry to demonstrate absolute dc magnetometry, which is immune to thermal noise and strain inhomogeneity.
Key Findings
1
A spectrally narrow qudit mode is excited at the pump frequency, alongside several other modes whose relative positions depend on external magnetic field.
2
Room-temperature coherent control of high-dimensional qudits (vacancy-related spins) in isotopically enriched silicon carbide is demonstrated.
3
Selective quantum control of homogeneous spin packets is achieved with sub-MHz spectral resolution.
4
Theory of multipole spin dynamics is developed to explain the observed qudit mode structure and dynamics.
5
Two-frequency Ramsey interferometry enables absolute dc magnetometry that is immune to thermal noise and strain inhomogeneity.
Research Object
Vacancy-related spin qudits in silicon carbide enriched with nuclear spin-free isotopes at room temperature
Research Subject
Excitation and coherent control of spectrally narrow qudit modes, selective manipulation of homogeneous spin packets (sub-MHz resolution), multipole spin dynamics, and two-frequency Ramsey interferometry for absolute dc magnetometry immune to thermal noise and strain inhomogeneity
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2019-04-11
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