The properties of quantum systems interacting with their environment, commonly called open quantum systems, can be affected strongly by this interaction. Although this can lead to unwanted consequences, such as causing decoherence in qubits used for quantum computation1, it can also be exploited as a probe of the environment. For example, magnetic resonance imaging is based on the dependence of the spin relaxation times of protons2 in water molecules in a host's tissue3. Here we show that the excitation energy of a single spin, which is determined by magnetocrystalline anisotropy and controls its stability and suitability for use in magnetic data-storage devices4, can be modified by varying the exchange coupling of the spin to a nearby cond...
Spin transfer in magnetic multilayers offers the possibility of ultrafast, low-power device operatio...
Spin resonance of individual spin centers allows applications ranging from quantum information techn...
Spin resonance of individual spin centers allows applications ranging from quantum information techn...
Mixing of discretized states in quantum magnets has a radical impact on their properties. Managing t...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
© 2019 American Physical Society.Shrinking spintronic devices to the nanoscale ultimately requires l...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
Spin resonance of individual spin centers allows applications ranging from quantum information techn...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
Spin transfer in magnetic multilayers offers the possibility of ultrafast, low-power device operatio...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
Spin transfer in magnetic multilayers offers the possibility of ultrafast, low-power device operatio...
Spin resonance of individual spin centers allows applications ranging from quantum information techn...
Spin resonance of individual spin centers allows applications ranging from quantum information techn...
Mixing of discretized states in quantum magnets has a radical impact on their properties. Managing t...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
© 2019 American Physical Society.Shrinking spintronic devices to the nanoscale ultimately requires l...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
Spin resonance of individual spin centers allows applications ranging from quantum information techn...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
Spin transfer in magnetic multilayers offers the possibility of ultrafast, low-power device operatio...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
Spin transfer in magnetic multilayers offers the possibility of ultrafast, low-power device operatio...
Spin resonance of individual spin centers allows applications ranging from quantum information techn...
Spin resonance of individual spin centers allows applications ranging from quantum information techn...