Quantum two-level systems (TLSs) are present in the materials of qubits and are considered defects because they limit qubit coherence. For superconducting qubits, the quintessential Josephson junction barrier is made of amorphous alumina, which hosts TLSs. However, TLSs are not understood generally -- either structurally or in atomic composition. In this study, we greatly extend the quantitative data available on TLSs by reporting on the physical dipole moment in two alumina types: polycrystalline γ−Al$_2$O$_3$ and amorphous a−AlO$_x$. To obtain the dipole moments p$_z$, rather from the less-structural coupling parameter g, we tune individual TLSs with an external electric field to extract the p$_z$ of the TLSs in a cavity QED system. We fi...
Constructing circuits which invoke the tunnelling effect of Josephson junctions in the superconducti...
While several experiments claim that two-level system (TLS) defects in amorphous surfaces/interfaces...
Quantum computing is a very interesting field, due to the ability of quantum computers to solve many...
Quantum two-level systems (TLSs) intrinsic to glasses induce decoherence in many modern quantum devi...
The anomalous low-temperature properties of glasses arise from intrinsic excitable entities, so-call...
Quantum two-level systems (TLSs) intrinsic to glasses induce decoherence in many modern quantum devi...
Recent progress with microfabricated quantum devices has revealed that an ubiquitous source of noise...
Amorphous solids show surprisingly universal behaviour at low temperatures. The prevailing wisdom is...
This work is concerned with Al/Al-oxide(AlOx)/Al-layer systems which are important for Josephson-jun...
Parasitic two-level tunnelling systems originating from structural material defects affect the funct...
Tunneling defects in disordered materials form spurious two-level systems which are a major source o...
In this dissertation, I introduce a novel method for measuring individual nanoscale two-level system...
1/f noise caused by microscopic two-level systems (TLS) is known to be very detrimental to the perfo...
Understanding the nature and dynamics of material defects in superconducting circuits is of paramoun...
One of the most accepted models that describe the anomalous thermal behavior of amorphous materials ...
Constructing circuits which invoke the tunnelling effect of Josephson junctions in the superconducti...
While several experiments claim that two-level system (TLS) defects in amorphous surfaces/interfaces...
Quantum computing is a very interesting field, due to the ability of quantum computers to solve many...
Quantum two-level systems (TLSs) intrinsic to glasses induce decoherence in many modern quantum devi...
The anomalous low-temperature properties of glasses arise from intrinsic excitable entities, so-call...
Quantum two-level systems (TLSs) intrinsic to glasses induce decoherence in many modern quantum devi...
Recent progress with microfabricated quantum devices has revealed that an ubiquitous source of noise...
Amorphous solids show surprisingly universal behaviour at low temperatures. The prevailing wisdom is...
This work is concerned with Al/Al-oxide(AlOx)/Al-layer systems which are important for Josephson-jun...
Parasitic two-level tunnelling systems originating from structural material defects affect the funct...
Tunneling defects in disordered materials form spurious two-level systems which are a major source o...
In this dissertation, I introduce a novel method for measuring individual nanoscale two-level system...
1/f noise caused by microscopic two-level systems (TLS) is known to be very detrimental to the perfo...
Understanding the nature and dynamics of material defects in superconducting circuits is of paramoun...
One of the most accepted models that describe the anomalous thermal behavior of amorphous materials ...
Constructing circuits which invoke the tunnelling effect of Josephson junctions in the superconducti...
While several experiments claim that two-level system (TLS) defects in amorphous surfaces/interfaces...
Quantum computing is a very interesting field, due to the ability of quantum computers to solve many...