Zurich Instruments
Principles of Lock-in Detection
updated
Chapters:
00:00 - 1:05 Open loop transfer function
1:05 - 2:12 Phase locked-loop setup
2:12 - end Automatic Gain Control
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Whether you are studying new qubit types, pushing fabrication to new standards, or improving qubit control, Zurich Instruments quantum instrumentation enables you to get the best out of your work.
Learn more: zhinst.com/new-shf-plus
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今回の最終回では、Zurich Instrumentsが無償で提供しているロックインアンプのコントロールソフト、LabOneの便利機能についてご紹介します。
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Chapters:
0:00 - 1:50 : Introduction
1:51 - 27:47: Qubit tune-up with LabOne Q
27:48 - 43:39: Architecture and concepts
43:40 - 56:10: Customizing your workflows
Qubit measurements were performed at the ETHZ-PSI Quantum Computing Hub under the Innosuisse project “Scalable Hardware and Software Control System for Error Correction in Superconducting Quantum Processors” (104.020 IP-ICT)
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第四回は掃引測定について。Zurich Instrumentsのロックインアンプでは、固定周波数の測定だけではなく、周波数を掃引させたり、また印加するバイアス電圧を変化させて、掃引測定ができます。これによりデバイスや回路、システムの特性が簡単に測定でき、新たな可能性が広がります。
ぜひ皆様も、Zurich Instrumentsのロックインアンプで、新しい世界をご体験ください。
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第三回は、複数周波数での測定についてご紹介します。Zurich InstrumentsのMFLIでは、最大4個のデモジュレータを使うことができ、それぞれのデモジュレータに割り当てた高調波や任意の周波数を、同時にロックイン測定が可能です。これにより従来のロックインアンプでは1台で実現出来なかった、複雑な測定が可能となり、アプリケーションの幅を大きく広げることが出来ます。
ぜひ皆様も、Zurich Instrumentsのロックインアンプで、新しい世界をご体験ください。
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第二回目は、長時間の測定について考察します。低い周波数の測定など長い時定数を使うロックイン測定では、大変ゆっくりな測定値の変化になるため、定常状態であるのか、本当に信号は安定して変化しないのかなど、不安になることも多々あります。
Zurich InstrumentsのMFLIを使うと、そのような変化を確実に捉えることが出来、最適な設定で、測定を速く正確に行うことが出来る様になります。
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In this webinar, you'll learn:
1. How to tackle the complexities of sideband measurements, injection locking, and stabilization;
2. The importance of pulsed measurements for cutting-edge applications like quantum non-demolition measurements and hybrid quantum systems;
3. And how digital lock-in amplifiers can seamlessly integrate these techniques into a single, versatile instrument.
Learn more about our Lock-in Amplifiers: zhinst.com/lock-in-amplifiers
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One of the standout features of the MFIA Impedance Analyzer is its user-friendly design, which makes it incredibly quick and easy to set up and use. Thanks to the intuitive LabOne control software, you can run your first impedance measurements within a few minutes. LabOne is freely available and does an excellent job of simplifying the entire process, whether you're a novice or an experienced researcher.
Don't miss this opportunity to see how the MFIA Impedance Analyzer can revolutionize your workflow, providing efficient and accurate impedance measurements without the hassle.
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第一回目は、全体像をつかみずらい、時定数の設定について取り上げています。ロックイン測定において、時定数は重要なパラメータですが、従来のロックインアンプでは、最適な値を設定することは、かなり熟練が必要と思われてきました。Zurich InstrumentsのMFLIでは、グラフの変化を見ながら値を設定していくことで、誰でも容易に最適値を選べ、正確な測定ができるようになります。
ぜひ皆様も、Zurich Instrumentsのロックインアンプで、新しい世界をご体験ください。
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By averaging only the signal of interest while simultaneously rejecting all spurious noise contributions, Lock-in amplifiers and boxcar averagers are the ideal tools to boost your signal-to-noise ratio when measuring small optical signals.
In this webinar, you will:
- Learn the measurement principles of lock-in amplification and boxcar averaging;
- Understand why such techniques are beneficial for capturing small signals in optical experiments; and
- Learn which applications benefit from the two different approaches.
Chapters:
00:00 Introduction
02:15 Zurich Instruments profile
03:49 Optics and photonics overview
11:20 Noise sources and modulation
16:39 Lock-in amplifiers and their working principles
18:47 Tunable diode laser absorption spectroscopy
20:53 Fluorescence analysis at multiple wavelengths
23:09 Low-pass filter settings
27:39 Pump-probe spectroscopy
30:29 Boxcar Averaging working principle
34:49 THz time-domain spectroscopy
36:28 SRS microscopy
38:14 Conclusions measurement advice
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Register now for the upcoming webinar on the 19th of Nov, 2024: zhinst.zoom.us/webinar/register/WN_DNMiUpipRpSGm10pO5cW7g
Chapters:
00:00 - 00:30: Introduction
00:30 - 1:05: The Applications Library in the Zurich Instruments solution
1:05 - 1:25: Physics-based measurement description
1:25 - 2:10: Experiments and workflows
2:10 - 2:31: Tailoring to your needs
2:31 - end: Outro
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Watch the video to learn more about her role and visit our careers page for exciting job opportunities!
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One of the standout features of the MFLI Lock-in Amplifier is its user-friendly design, which makes it incredibly quick and easy to set up and use. Thanks to the intuitive LabOne control software, you can experience your first measurements within just three minutes. LabOne is freely available and does an excellent job of simplifying the entire process, whether you're a novice or an experienced researcher.
Take advantage of this opportunity to see how the MFLI Lock-in Amplifier can revolutionize your workflow, providing efficient and accurate measurements without the hassle.
Find more details at: zhinst.com/lock-in-amplifiers
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At Zurich Instruments, we recognize the intricacies that come with #quantumresearch. Utilizing our far-reaching technical expertise and our premier #quantuminstruments, we're focused on helping you swiftly navigate through these complexities. We're eager to let you witness how we can turn your #quantuminnovations from prospects into reality today.
Explore our latest #Quantum Instrumentations and expand your understanding of how fast qubit usage can revolutionize your research: zhinst.com/new-shf-plus
View the various quantum applications that our instruments cater to: zhinst.com/applications/quantum-technologies/quantum-research
Subscribe 🔔 to our YouTube channel for the latest insights into #quantumresearch, technology, and innovation!
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This talk is part of the 7th SPM User Meeting, held at McGill University.
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This talk is part of the 7th SPM User Meeting, held at McGill University.
Learn more about our products: zhinst.com/applications/scanning-probe-microscopy/scanning-probe-microscopy-spm
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This talk is part of the 7th SPM User Meeting, held at McGill University.
Learn more about our products: zhinst.com/applications/scanning-probe-microscopy/scanning-probe-microscopy-spm
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This talk is part of the 7th SPM User Meeting, held at McGill University.
Learn more about our products: zhinst.com/applications/scanning-probe-microscopy/scanning-probe-microscopy-spm
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This talk is part of the 7th SPM User Meeting, held at McGill University.
Learn more about our products: zhinst.com/applications/scanning-probe-microscopy/scanning-probe-microscopy-spm
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Learn more: zhinst.com/ch/en/blogs/quantitative-snr-comparison-lock-in-amplifier-vs-boxcar-averager
Related webinar: youtube.com/watch?v=hnXgkZVePfQ
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"Exciting times are ahead," says Andrea. "We're ready to enhance our capabilities and better serve the scientific community."
Read the full story here: zhinst.com/news/zurich-instruments-new-ceo-next-leap-forward
🔗 Discover Our Test and Measurement Solutions: zhinst.com/lock-in-amplifiers
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Key Features of the SHF+ Series:
- State-of-the-art 8.5 GHz qubit controllers, quantum analyzers, and signal generators;
- Superior signal-to-noise ratio and reduced phase noise for higher qubit fidelities;
- Scalable control with our advanced LabOne Q software, perfect for managing systems from single qubits to large arrays;
- Whether you are pushing the frontiers of quantum computing or performing complex experiments, the SHF+ series is designed to advance your research capabilities.
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We address:
1. The essential measurement steps to find a sensor’s optimal operation conditions;
2. Several control strategies, including Phase-locked Loops (PLL) and Pound-Drever-Hall (PDH);
3. How efficient workflows with correct instruments enable sensing yoctograms and attonewtons.
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00:00 - 00:30: Introduction
00:30 - 00:58: Meet the instruments
00:58 - 1:40: Noise floor and phase noise
1:40 - 1:53: Tested in labs worldwide
1:53 - end: Outro
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In this tutorial, you will learn how to control your MFIA Impedance Analyzer via the Python API from a Jupyter Notebook. Meng Li walks you through how to connect with the Python API, verify the connection, and use the basic commands set and get.
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In this tutorial, you will learn how the MFIA can control an external light source to take light-dependent impedance measurements. The MFIA gives a voltage pulse to the light controller to provide light pulses and the resulting capacitance transients are measured using the LabOne Plotter tool for streamed data, and the Data Acquisition tool of LabOne for triggered.
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In this tutorial, you will see an implementation of the technique known as intensity-modulated photocurrent spectroscopy which is complementary to the DLOS and DLTS techniques. The MFIA is configured to record the light signal, and the current simultaneously, allowing the photocurrent signal to be acquired while the intensity of the light is modulated, and controlled by the MFIA.
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In this video, you will see a demonstration of a microfluidic measurement where beads flow through a microfluidic channel, pumped by the Fluigent LINEUP(tm) System. The HF2LI Lock-in Amplifier is used to detect the beads as they pass the electrodes of the microfluidic channel.
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In this video, you will see a brief introduction to the characterization of a sensor with the MFIA Impedance Analyzer. The techniques include; frequency response, step response, FFT chirp, and capacitance transient measurement.
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In this video, you will see impedance measurements of a Gd-doped Ceria (CeO2) film. You’ll learn how to measure an electrochemical impedance spectrum with the LabOne Sweeper tool.
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This talk is part of the 3rd DLTS Virtual User Meeting.
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This talk is part of the 3rd DLTS Virtual User Meeting.
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This talk is part of the 3rd DLTS Virtual User Meeting.
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This talk is part of the 3rd DLTS Virtual User Meeting.
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We show and discuss the construction of sweeps and averaging loops on the example of different experiments and plots of compiled pulse sequences.
Install LabOne Q: docs.zhinst.com/labone_q_user_manual/getting_started/installation.html
LabOne Q user manual: docs.zhinst.com/labone_q_user_manual/overview.html
Cryoscope method: arxiv.org/pdf/1907.04818.pdf
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0:00 Introduction
0:49 Sweep Parameters
3:00 Single sweeps
4:49 Simultaneous sweeps
6:04 Multi-dimensional sweeps
8:12 Acquire loop
8:36 Data acquisition
9:16 Data averaging
9:58 Repetition mode
11:38 Outro
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00:00 - 00:24 Introduction
00:25 - 01:18 Feedback in microwaves
01:18 - 01:58 LabOne Frequency Response Analysis
01:59 - 02:15 Phase locked loop
02:16 - 02:32 Automatic Gain control
02:33 - end Outro
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