Coherent Optical Systems Internship

Taaraconnect
Sunnyvale, CA
Hybrid

Who this role is best for

Best suited to candidates with advanced degrees in electrical engineering or related fields working in wireless optical communication and photonics.

Best fit for

  • Candidates with advanced degrees in electrical engineering or applied physics and a passion for optical communication systems
    — “Currently pursuing a Master's, or PhD in Electrical Engineering, Applied Physics, Optics, Communications, or a related field.
  • Individuals with hands-on lab experience and a deep understanding of hardware limitations in control systems
    — “Working knowledge of Analog / RF Electronics, and a feel for how hardware limits (delay, bandwidth, noise, saturation) shape the loop and the signal processing around it.
  • Candidates who can independently drive hardware experiments and synthesize results from simulation and measurement
    — “An owner's mindset, able to take an underspecified hardware problem and drive it forward independently in the lab.

Things to consider

  • The internship requires at least three days per week in the Sunnyvale office, limiting remote flexibility
    — “Ability to work in the Sunnyvale office at least 3 days per week.
  • The role demands a long-term commitment of 6-12 months, which may not suit short-term availability
    — “Ability to commit to a 6-12 months internship, with flexibility to fit your academic schedule.

How to stand out

  • Emphasize your experience with control theory applied to hardware feedback loops in your resume and interview responses
    — “Control theory you have applied on hardware, including measuring an open-loop response, closing a feedback loop, and diagnosing why one oscillates, drifts, or loses lock.
  • Highlight your ability to document clear conclusions, even when an approach fails, in your application materials
    — “A habit of reaching a clear conclusion and documenting it, including when the conclusion is that an approach does not work.
  • Showcase your experience with scientific Python tools such as NumPy and SciPy in your technical projects and coding samples
    — “Experience with scientific Python (NumPy/SciPy), and comfort writing clean, modular, tested code.
  • Demonstrate your ability to work with high-speed lab equipment like spectrum analyzers and power meters
    — “Hands-on lab experience, including work with lasers and modulators, and comfort with high-speed scopes, spectrum analyzers, and power meters.
  • Position yourself as someone who can evaluate real-world components beyond published specifications
    — “Judgment about real components, knowing which datasheet specifications are guaranteed and which are typical, and a willingness to go measure the ones that matter.
Pace · SteadyCollaboration · MediumAutonomy · MediumDecision Impact · Individual

Derived from job-description analysis by Serendipath's career intelligence engine.

What success looks like

  • Component Evaluation: Screen commercially available lasers, modulators, and front-end electronics against system requirements
Typical background
Currently pursuing a Master's, or PhD in Electrical Engineering, Applied Physics, Optics, Communications, or a related field

Skills & requirements

Required

Analog RF ElectronicsDigital CommunicationsSignal ProcessingControl TheoryScientific Python (numpy/scipy)Modular Code WritingHardware Limits UnderstandingFeedback Loop DesignPhysical-layer Simulation

Preferred

Laser Frequency ControlOpticsWireless Optical Communication

Stack & domain

Analog / RF ElectronicsDigital Communications / Signal ProcessingScientific Python (numpy/scipy)Control TheoryModulationDetectionBERSpectral AnalysisOwner's MindsetClear ConclusionIndependent WorkClean, Modular, Tested CodeOpticsWireless Optical CommunicationPhotonics Chip Technologies

About the role

Original posting from Taaraconnect via Ashby

About Taara:

Born at X, Google's Moonshot Factory, Taara is on a mission to connect billions of people lacking abundant and affordable internet today by pioneering the way we use light to deliver faster, cheaper, more reliable connectivity. We are bringing groundbreaking wireless optical communication and photonics chip technologies to the world to bridge the digital divide.

Joining Taara allows you to work as part of a multidisciplinary team of experts in optics, software, and hardware, all collaborating to solve the hardest connectivity challenges on a global scale. If you want to tackle problems that matter and build tools with real-world impact, we would love to meet you.

About the Role:

At Taara, as a Coherent Optical Systems Intern, you will work on receiver synchronization for next-generation wireless optical communication (WOC) links. Your work spans the lab bench and physical-layer simulation. What such a receiver can achieve is bounded by real lasers, modulators, and analog electronics. You will evaluate components against system requirements, assemble the benchtop experiments that test them, and work toward stable closed-loop operation. In parallel you will extend the simulation that predicts this behavior, using each to check the other.

There is real room to shape the direction: survey what is available, design the experiments that separate real limits from prototype artifacts, and follow the evidence to the strongest design.

How you will make 10X Impact:

  • Component Evaluation: Screen commercially available lasers, modulators, and front-end electronics against system requirements, and measure the characteristics vendors do not publish (tuning response, wavelength stability and drift, linewidth, bandwidth, range, noise).
  • Synchronization & Control Loop Design: Design and analyze the feedback loops that track carrier phase and frequency, and validate them against control theory using transient, frequency-domain, and stability analysis.
  • Physical-Layer Simulation: Extend our end-to-end model of the link and its tracking loops, and reconcile it against measurement.

What you should have:

  • Currently pursuing a Master's, or PhD in Electrical Engineering, Applied Physics, Optics, Communications, or a related field.
  • Working knowledge of Analog / RF Electronics, and a feel for how hardware limits (delay, bandwidth, noise, saturation) shape the loop and the signal processing around it. Strong foundation in Digital Communications / Signal Processing (modulation, detection, BER, spectral analysis).
  • Hands-on lab experience, including work with lasers and modulators, and comfort with high-speed scopes, spectrum analyzers, and power meters.
  • Strong familiarity with Control theory on hardware measuring an open-loop response, closing a feedback loop, and diagnosing why one oscillates, drifts, or loses lock.
  • Experience with scientific Python (NumPy/SciPy), and comfort writing clean, modular, tested code.
  • An owner's mindset, able to take an underspecified hardware problem and drive it forward independently in the lab.
  • A habit of reaching a clear conclusion and documenting it, including when the conclusion is that an approach does not work.
  • Ability to commit to a 6-12 months internship, with flexibility to fit your academic schedule.
  • Ability to work in the Sunnyvale office at least 3 days per week.

It'd be great if you also had one or more of these:

  • Laser Frequency Control: Stabilizing or locking lasers, or hands-on work with narrow-linewidth sources, tunable lasers, and optical modulators.
  • Synchronization: Familiarity with phase-locked loops, carrier and timing recovery, or coherent detection.
  • Hardware Depth: Hands-on circuit design (analog, RF, or mixed-signal), or lab characterization of high-speed electronics.
  • High-Performance Numerics: Experience with accelerated array frameworks such as JAX, and functional, vectorized programming.
  • Stochastic Methods: Phase-noise modeling, rare-event Monte Carlo, or first-passage / cycle-slip statistics (Fokker-Planck, Kramers rate).
  • Domain Knowledge: Optical or RF communications, photonics, free-space optics, or atmospheric turbulence/fading channels.
  • Judgment about real components, knowing which datasheet specifications are guaranteed and which are typical, and a willingness to go measure the ones that matter.
  • Control theory you have applied on hardware, including measuring an open-loop response, closing a feedback loop, and diagnosing why one oscillates, drifts, or loses lock.

What we offer:

  • Competitive salary: $7,000-$10,000/month depending on degree.
  • Flexible duration to fit your academic schedule.
  • Direct mentorship from industry-leading engineers in a "moonshot" environment.
  • Opportunity to work on technology that has the potential to change how billions of people access the internet.

Source: Taaraconnect careers (Ashby)

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