采访
本页面收集了我们季度新闻通讯中的对于客户与合作伙伴的专访。让我们一起听一下这些与我们一起工作的人的意见。
Pushing the Limits of Quantum Sensing: Uncovering Axion Dark Matter

“I’m developing new quantum sensors for axion dark matter experiments. The goal is to build devices sensitive enough to detect the tiny signals that dark matter might produce.”
Beyond Spintronics: Exploring Orbital Transport for Energy-Efficient Electronic Devices

“The main purpose of my investigation is to shed some light on the very fundamental aspects of the origin of orbital currents, with particular care about their use to build energy-efficient and environmentally sustainable electronic devices.”
Creating the Nodes of the Quantum Internet: A Journey Through Quantum Memories and Entanglement Distribution

“My research focuses on quantum memories based on crystals doped with rare-earth ions. These crystals … build an elementary node of a quantum network, allowing us to distribute entanglement over large distances and forming the basis of a future quantum internet.”
Broadband Optical Noise Analysis of LEDs with the MFLI Lock-in Amplifier

“For the high-frequency measurements, a Zurich Instruments MFLI Lock-in Amplifier enabled precise characterization from the kHz to MHz ranges. The MFLI has excellent noise characteristics compared to other lock-in amplifiers, as well as a large dynamic range, which is important for studying 1/f noise.”
A Simple Path to Fast Graphene Qubit Readout: QPC Sensor in a Resonant Circuit

“The Zurich Instruments 600 MHz UHFLI Lock-in Amplifier plays a central role in this setup […]. It helps significantly reduce the complexity of the experimental setup compared to home-built analog demodulation circuits.”
From Bulky Optics to On-Chip Integration: A Portable Diamond-NV Magnetic Field Camera

“...our camera resolves the magnetic field gradient [...]. These results establish that robust, compact, chip‑integrated diamond‑NV sensors can perform magnetic field imaging without moving components or extensive microscope optics.”
Ultrasound Pulse-Echo Measurements with the GHFLI Lock-in Amplifier for the Investigation of Superconductors

“The high sensitivity, fast demodulation bandwidth and high data transfer rate of the GHFLI are crucial for this experiment, as it requires the measurement of short pulses since the time between the generated pulse and the echoes is very short.”
Analyzing Art Like the Mona Lisa: Non-Destructive, Non-Invasive, and Now Portable With LFEPR

“Our solution was to develop the EPR Mobile Universal Surface Explorer (MOUSE)… which can be used to non-invasively and non-destructively analyze a small region of a painting, whether in a laboratory or on the ceiling of the Sistine Chapel.Sample size is no longer a limitation.”
Parallel MRI: Unlocking Multinuclear Imaging with a Single Channel

“We developed a hardware-efficient method for simultaneous multinuclear MRI using a single RF transmit/receive channel.”
From Pork Chops to Pathology: A Hands-On Approach to Cancer Research

“What makes this research area important is its potential to significantly improve patient outcomes by enabling more precise surgeries.”
从分子自旋到容错量子比特:Junjie Liu博士的可扩展量子存储器研究之路

“我的研究致力于理解(亚)纳米尺度量子自旋系统的物理特性,包括分子纳米磁体和半导体掺杂剂及其在自旋电子学中的应用。我旨在探索自旋与电/光自由度之间的相互作用,并基于这些相互作用开发新型量子技术。”
变革人机交互:Neuranics公司与隧道磁阻传感技术的发展历程

“苏黎世仪器的 MFLI 锁相放大器在验证我们超灵敏TMR传感器的性能方面发挥了关键作用。实现皮特斯拉级灵敏度对于检测微弱生物磁信号至关重要,而MFLI提供了表征和优化我们传感器技术所需的精度。”

探索铁电材料与射频电子学:专访Kevin Nadaud教授谈表征技术、CMOS集成与研究挑战

“铁电材料因其高介电常数且具备可调特性、优异压电响应等优势,在传感器(压力/振动/加速度传感)、电容器及滤波器等领域展现出广阔应用前景。若能实现CMOS兼容的铁电工艺集成,将有望在同一芯片上同步实现传感器功能(铁电材料)与信号处理单元(功率放大器/信号调理电路等)的协同设计。”

如果你能触摸蒙娜丽莎会怎样?Easa Aliabbasi 谈数字触觉与触觉反馈的未来

理解非线性动力学:对话 Akshay Naik,基于二维材料的机械谐振器研究

“我的大部分研究都集中在由传统硅/氮化硅和石墨烯等二维材料制成的机械谐振器上……在基础研究层面,借助苏黎世仪器的 UHFLI 锁相放大器 等高端设备驱动谐振模式,深入研究其运动背后的物理机制,特别是不同模式间的非线性相互作用。”

微型传感器但有大影响:Harry Cook与Anna Kowalczyk博士谈先进脑磁成像技术

Laser Thermal 的热导率测量方法:Hans Olson 谈薄膜、块体材料和传热挑战

Michael Ruppert 博士





