Quantum information and computation has become a vast field paved with opportunities for researchers and investors. As large multinational companies and international funds are heavily investing in quantum technologies it is still a question which platform is best suited for the task of realizing a scalable quantum processor. In this work we investigate hole spins in Ge quantum wells. These hold great promise as they possess several favorable properties: a small effective mass, a strong spin-orbit coupling, long relaxation time and an inherent immunity to hyperfine noise. All these characteristics helped Ge hole spin qubits to evolve from a single qubit to a fully entangled four qubit processor in only 3 years. Here, we investigated a qubit...
Qubits based on quantum dots have excellent prospects for scalable quantum technology due to their c...
We investigate hole spin relaxation in the single- and multihole regime in a 2 × 2 germanium quantum...
Raw data on which the figures in the publication 'Coherent shuttling of a hole spin qubit through mu...
Quantum information and computation has become a vast field paved with opportunities for researchers...
Spin qubits are considered to be among the most promising candidates for building a quantum processo...
Spin qubits are considered to be among the most promising candidates for building a quantum processo...
The spin-orbit interaction permits to control the state of a spin qubit via electric fields. For hol...
The spin-orbit interaction permits to control the state of a spin qubit via electric fields. For hol...
Flopping mode qubits in double quantum dots (DQDs) allow for coherent spin-photon hybridization and ...
Spins in semiconductor quantum dots are among the most promising candidates for the realization of a...
Hole-spin qubits in quasi-one-dimensional structures are a promising platform for quantum informatio...
A singlet-triplet hole spin qubit in a Ge quantum well is demonstrated to be fast, coherent, and com...
Holes confined in quantum dots have gained considerable interest in the past few years due to their ...
Qubits based on quantum dots have excellent prospects for scalable quantum technology due to their c...
We investigate hole spin relaxation in the single- and multihole regime in a 2 × 2 germanium quantum...
Raw data on which the figures in the publication 'Coherent shuttling of a hole spin qubit through mu...
Quantum information and computation has become a vast field paved with opportunities for researchers...
Spin qubits are considered to be among the most promising candidates for building a quantum processo...
Spin qubits are considered to be among the most promising candidates for building a quantum processo...
The spin-orbit interaction permits to control the state of a spin qubit via electric fields. For hol...
The spin-orbit interaction permits to control the state of a spin qubit via electric fields. For hol...
Flopping mode qubits in double quantum dots (DQDs) allow for coherent spin-photon hybridization and ...
Spins in semiconductor quantum dots are among the most promising candidates for the realization of a...
Hole-spin qubits in quasi-one-dimensional structures are a promising platform for quantum informatio...
A singlet-triplet hole spin qubit in a Ge quantum well is demonstrated to be fast, coherent, and com...
Holes confined in quantum dots have gained considerable interest in the past few years due to their ...
Qubits based on quantum dots have excellent prospects for scalable quantum technology due to their c...
We investigate hole spin relaxation in the single- and multihole regime in a 2 × 2 germanium quantum...
Raw data on which the figures in the publication 'Coherent shuttling of a hole spin qubit through mu...