We report highly tunable control of holes in Ge/Si core/shell nanowires. We demonstrate the ability to create single quantum dots of various sizes, with low hole occupation numbers and clearly observable excited states. For the smallest dot size, we observe indications of single-hole occupation. Moreover, we create double and triple tunnel-coupled quantum dot arrays. In the double quantum dot configuration, we observe Pauli spin blockade. These results open the way to perform hole spin qubit experiments in these devices.</p
Holes confined in quantum dots have gained considerable interest in the past few years due to their ...
We study double quantum dots in a Ge/SiGe heterostructure and test their maturity towards singlet-tr...
The development of viable quantum computation devices will require the ability to preserve the coher...
We report highly tunable control of holes in Ge/Si core/shell nanowires. We demonstrate the ability ...
We define single quantum dots of lengths varying from 60 nm up to nearly half a micron in Ge-Si core...
Spins in semiconductor quantum dots are among the most promising candidates for the realization of a...
In a universal quantum computer, coherent control over the state of a quantum mechanical two-level s...
In a universal quantum computer, coherent control over the state of a quantum mechanical two-level s...
We investigate tunable hole quantum dots defined by surface gating Ge/Si core-shell nanowire heteros...
A quantum computer requires a quantum-mechanical two-level system with coherent control over its eig...
Holes confined in quantum dots have gained considerable interest in the past few years due to their ...
We study double quantum dots in a Ge/SiGe heterostructure and test their maturity towards singlet-tr...
The development of viable quantum computation devices will require the ability to preserve the coher...
We report highly tunable control of holes in Ge/Si core/shell nanowires. We demonstrate the ability ...
We define single quantum dots of lengths varying from 60 nm up to nearly half a micron in Ge-Si core...
Spins in semiconductor quantum dots are among the most promising candidates for the realization of a...
In a universal quantum computer, coherent control over the state of a quantum mechanical two-level s...
In a universal quantum computer, coherent control over the state of a quantum mechanical two-level s...
We investigate tunable hole quantum dots defined by surface gating Ge/Si core-shell nanowire heteros...
A quantum computer requires a quantum-mechanical two-level system with coherent control over its eig...
Holes confined in quantum dots have gained considerable interest in the past few years due to their ...
We study double quantum dots in a Ge/SiGe heterostructure and test their maturity towards singlet-tr...
The development of viable quantum computation devices will require the ability to preserve the coher...