Low Loss Superconducting Titanium Nitride Coplanar Waveguide Resonators
arXiv:1007.5096 · doi:10.1063/1.3517252
Abstract
Thin films of TiN were sputter-deposited onto Si and sapphire wafers with and without SiN buffer layers. The films were fabricated into RF coplanar waveguide resonators, and internal quality factor measurements were taken at millikelvin temperatures in both the many photon and single photon limits, i.e. high and low power regimes, respectively. At high power, internal quality factors ('s) higher than were measured for TiN with predominantly a (200)-TiN orientation. Films that showed significant (111)-TiN texture invariably had much lower 's, on the order of . Our studies show that the (200)-TiN is favored for growth at high temperature on either bare Si or SiN buffer layers. However, growth on bare sapphire or Si(100) at low temperature resulted in primarily a (111)-TiN orientation. Ellipsometry and Auger measurements indicate that the (200)-TiN growth on the bare Si substrates is correlated with the formation of a thin, nm, layer of SiN during the pre-deposition procedure. In the single photon regime, of these films exceeded , while thicker SiN buffer layers led to reduced 's at low power.
Submitted to APL July 2010
References in corpus (11)
- Superconducting Circuits and Quantum Information
- Experimental evidence for a surface distribution of two-level systems in superconducting lithographed microwave resonators
- Microwave Dielectric Loss at Single Photon Energies and milliKelvin Temperatures
- Titanium Nitride Films for Ultrasensitive Microresonator Detectors
- State tomography of capacitively shunted phase qubits with high fidelity
- Improving the Coherence Time of Superconducting Coplanar Resonators
- Reducing quantum-regime dielectric loss of silicon nitride for superconducting quantum circuits
- Losses in coplanar waveguide resonators at millikelvin temperatures
- A Position Sensitive X-ray Spectrophotometer using Microwave Kinetic Inductance Detectors
- On the properties of superconducting planar resonators at mK temperatures
- Thin film dielectric microstrip kinetic inductance detectors
Cited by in corpus (85)
- Circuit Quantum Electrodynamics
- Towards understanding two-level-systems in amorphous solids -- Insights from quantum circuits
- Scaling silicon-based quantum computing using CMOS technology: State-of-the-art, Challenges and Perspectives
- Improved superconducting qubit coherence using titanium nitride
- Materials loss measurements using superconducting microwave resonators
- Reducing intrinsic loss in superconducting resonators by surface treatment and deep etching of silicon substrates
- Study of loss in superconducting coplanar waveguide resonators
- Quasiparticle dynamics in granular aluminum close to the superconductor to insulator transition
- Quantum information processing with bosonic qubits in circuit QED
- Low-noise kinetic inductance traveling-wave amplifier using three-wave mixing
- Quantum Circuit Refrigerator
- Characterization and reduction of microfabrication-induced decoherence in superconducting quantum circuits
- Magnetic field resilient superconducting coplanar waveguide resonators for hybrid cQED experiments
- An atomic interface between microwave and optical photons
- Atomic layer deposition of titanium nitride for quantum circuits
- Improving the Quality Factor of Microwave Compact Resonators by Optimizing their Geometrical Parameters
- Frequency-tunable Superconducting Resonators via Nonlinear Kinetic Inductance
- A titanium-nitride near-infrared kinetic inductance photon-counting detector and its anomalous electrodynamics
- Etch Induced Microwave Losses in Titanium Nitride Superconducting Resonators
- Quantum-limited amplification and parametric instability in the reversed dissipation regime of cavity optomechanics
- Projected dipole moments of individual two-level defects extracted using circuit quantum electrodynamics
- Comparison of Dielectric Loss in Titanium Nitride and Aluminum Superconducting Resonators
- Proximity-Coupled Ti/TiN Multilayers for use in Kinetic Inductance Detectors
- Photon-noise limited sensitivity in titanium nitride kinetic inductance detectors
- Perspective: Challenges and Transformative Opportunities in Superconductor Vortex Physics
- Superconducting granular aluminum resonators resilient to magnetic fields up to 1 Tesla
- Fano Interference in Microwave Resonator Measurements
- Overlap junctions for high coherence superconducting qubits
- Quasiparticles in superconducting qubits with asymmetric junctions
- Inductively shunted transmon qubit with tunable transverse and longitudinal coupling
- Characterization and In-situ Monitoring of Sub-stoichiometric Adjustable Tc Titanium Nitride Growth
- Chip-to-chip entanglement of transmon qubits using engineered measurement fields
- Millimeter-Wave Polarimeters Using Kinetic Inductance Detectors for TolTEC and Beyond
- Granular superconductors for high kinetic inductance and low loss quantum devices
- TOF-SIMS Analysis of Decoherence Sources in Nb Superconducting Resonators
- High-kinetic inductance NbN films for high-quality compact superconducting resonators
- The electron-phonon relaxation time in thin superconducting titanium nitride films
- Superconductivity behavior in epitaxial TiN films points at surface magnetic disorder
- Nitrogen Plasma Passivated Niobium Resonators for Superconducting Quantum Circuits
- Long-lived, radiation-suppressed superconducting quantum bit in a planar geometry
- Identifying capacitive and inductive loss in lumped element superconducting hybrid titanium nitride/aluminum resonators
- Superconducting TiN Films Sputtered over a Large Range of Substrate DC Bias
- An analysis method for transmission measurements of superconducting resonators with applications to quantum-regime dielectric-loss measurements
- Dielectric loss extraction for superconducting microwave resonators
- Anomalous response of superconducting titanium nitride resonators to terahertz radiation
- Quantum information processing with trapped electrons and superconducting electronics
- Coplanar cavity for strong coupling between photons and magnons in van der Waals antiferromagnet
- Design and Testing of Kinetic Inductance Detectors Made of Titanium Nitride
- Isotropic plasma-thermal atomic layer etching of superconducting TiN films using sequential exposures of molecular oxygen and SFH plasma
- Superconducting routing platform for large-scale integration of quantum technologies
- Characterization of sputtered hafnium thin films for high quality factor microwave kinetic inductance detectors
- Shaping photons: quantum computation with bosonic cQED
- Manufacturing high-Q superconducting α-tantalum resonators on silicon wafers
- Measurement of optical constants of TiN and TiN/Ti/TiN multilayer films for microwave kinetic inductance photon-number-resolving detectors
- The Rise of Refractory Transition-Metal Nitride Films for Advanced Electronics and Plasmonics
- Development of MKIDs for measurement of the Cosmic Microwave Background with the South Pole Telescope
- Tunable ohmic environment using Josephson junction chains
- Catastrophic magnetic flux avalanches in NbTiN superconducting resonators
- Cryogenic LED pixel-to-frequency mapper for kinetic inductance detector arrays
- Homogeneous superconducting phase in TiN film : a complex impedance study
- Perspective: Reproducible Coherence Characterization of Superconducting Quantum Devices
- Critical Temperature tuning of Ti/TiN multilayer films suitable for low temperature detectors
- Ion-beam Assisted Sputtering of Titanium Nitride Thin Films
- High-quality superconducting α-Ta film sputtered on heated silicon substrate
- Photon-induced thermal effects in superconducting coplanar waveguide resonators
- Superconducting nitridized-aluminum thin films
- High resistance of superconducting TiN thin films against environmental attacks
- High-Kinetic Inductance Additive Manufactured Superconducting Microwave Cavity
- Frequency Fluctuations in Tunable and Nonlinear Microwave Cavities
- High-impedance resonators for strong coupling to an electron on helium
- Performance of high impedance resonators in dirty dielectric environments
- Large Microwave Inductance of Granular Boron-Doped Diamond Superconducting Films
- Magnetic field sensing with the kinetic inductance of a high- superconductor
- Material matters in superconducting qubits
- Superconducting-semiconducting voltage-tunable qubits in the third dimension
- From weak to strong-coupling superconductivity tuned by substrate in TiN films
- Characterization of harmonic modes and parasitic resonances in multi-mode superconducting coplanar resonators
- Operation of a high-frequency, phase-slip qubit
- High Impedance Granular Aluminum Ring Resonators
- Epitaxial titanium nitride microwave resonators: Structural, chemical, electrical, and microwave properties
- Optimizing CMOS-compatible, superconducting titanium nitride resonators: Deposition conditions and structuring processes
- Design of an inductively shunted transmon qubit with tunable transverse and longitudinal coupling
- Coherent noise cancellation in optomechanical system with double optical modes
- A CMOS compatible platform for high impedance superconducting quantum circuits
- Scanning tunneling spectroscopy of superconducting nitridized aluminum thin films