Hardware north star Zymir Ambient Quantum Systems

Quantum computing, at ambient temperature.

We are building the evidence and control platform for a programmable physical architecture inspired by how living systems pump energy, organize transport and dissipation, and capture useful outcomes. The destination is hardware—not a software-only quantum metaphor.

Research program. No Zymir quantum hardware yet.

No quantum-advantage or computational-speedup claim.

Operating target
Ambient conditions
Physical thesis
Driven + dissipative
Execution model
Dual-mode

Concept instrument / 01

One physical architecture. Two execution modes.

Research program
Mode A Annealing / analog Landscape evolution
Mode G Gate-based Timed coherent control
Shared initialization, coupling, control, and readout primitives; different execution protocols. This is the architecture target, not a claim of completed physical hardware.

01 / Destination

Not a warmer copy of a cryogenic machine.

Biology rarely wins by perfectly isolating large systems. It operates far from equilibrium: injecting energy, exploiting structured environments, protecting local dynamics, and trapping useful outcomes before they disappear. Zymir is translating those operating principles into falsifiable experiments toward an engineered quantum substrate.

02 / Architecture

The control stack is being built for the machine.

Software gives us a usable optimizer now and a falsifiable hardware specification later. Every schedule, pulse, sample, and transformation is recorded so a physical module can replace a simulated one without changing the scientific contract.

Input Problem + experiment QUBO · Ising · circuit · pulse
Zymir control plane Compile · probe · control · verify One evidence ledger across every backend
AAnnealing / analog

Shape a physical landscape.

Program fields, couplings, exploration strength, bath structure, and capture timing to steer an open system toward useful low-energy states.

  • Hamiltonian schedules
  • Structured dissipation
  • Conditional block dynamics
GGate-based

Compose timed coherent operations.

Translate circuits into pulse-program contracts for the same local quantum elements, then bind them to a calibrated device only when physical coherence and control pass the required gates.

  • Circuit-to-pulse lineage
  • Local coherent clusters
  • Gate fidelity to be measured, not assumed
Output Measured result + provenance Quality · latency · energy · physical evidence

03 / Biomimetic operating system

Inspired by biology. Engineered for control.

We are not assuming that a living organism is the computer. Biology is a working reference for sustained non-equilibrium operation under warm, wet, noisy conditions—and a source of mechanisms we can formulate, synthesize, and test. It is not evidence of programmable quantum computation.

  1. 01

    Pump

    Use light, voltage, or chemistry to create nonthermal initialization.

    Far from equilibrium
  2. 02

    Protect locally

    Test whether engineered local clusters retain coherence over a declared primitive.

    Modular quantum matter
  3. 03

    Shape the environment

    Treat noise spectrum, dephasing, and relaxation as programmable controls.

    Structured dissipation
  4. 04

    Connect selectively

    Explore chiral and synthetic structures for spin filtering and transport.

    Initialization + interconnect
  5. 05

    Capture

    Latch useful outcomes irreversibly after exploration, before they relax away.

    Late-time sink

04 / Evidence state

A research claim must show its maturity.

The platform keeps present capabilities separate from active experiments and the physical milestones still required. That separation is part of the product, not a footnote.

Built foundation

Reproducible control and solver core

Canonical optimization contracts, independently checked energies, deterministic local baselines, analog control programs, and complete run provenance.

  • Exact + mathematical controls
  • Annealing and physics-inspired backends
  • Bounded gate-model simulation

Active simulation

Open-system research controls

Coherent and stochastic backends exist, but the preregistered multi-factor H0 campaign is blocked before execution. No completed matched digital-twin result is claimed.

  • Dimensionless Lindblad dynamics
  • Fixed-temperature Glauber dynamics
  • Gate-to-pulse artifact lineage

Physical proof required

Ambient quantum hardware

No website language substitutes for measured initialization, coherence, programmable interaction, gate fidelity, readout, reset, and energy-to-solution on a physical device.

  • Room-condition quantum signatures
  • Repeatable dual-mode control
  • Matched classical comparison

05 / Physical program

Intended · Research domain / zymir.bio

The finish line is hardware.

Each stage must earn the next one. The software remains valuable throughout, but the research climax is a new physical route to quantum computation under ambient conditions.

Every gate has quantitative advancement, suspension, and kill conditions.

Propose a research partnership
  1. H0 / Numerical instrument

    Complete the preregistered model campaign

    The intended common experiment still needs a complete factor-to-model/control executor.

    In build
  2. H1 / Physical stochastic

    Physical stochastic primitive

    Demonstrate repeatable physical stochastic computation with raw energy and timing evidence; H1 alone does not issue an ambient label and remains diagnostic-only until typed device/day/instance/results close.

    Research target
  3. H2 / Quantum-active component

    Coherent local cluster

    Isolate a preregistered quantum witness from thermal, optical, electronic, and analysis artifacts. H2 alone does not issue an ambient label and remains diagnostic-only until typed witness evidence closes.

    Evidence gated
  4. H3-A / H3-G

    Separate annealing and gate readiness

    Qualify programmable interaction, annealing schedules, gates, reset, and readout without yet issuing a QPU claim.

    Mode readiness
  5. H4-A / H4-G / H4-DM

    One-mode processors, then coherent dual mode

    Run integrated one-mode programs and separately demonstrate a powered coherent handoff on the same physical architecture; disconnected providers do not qualify. One-mode public labels remain blocked until typed physical study/results replace summary fields. Every H4-or-later status is code-capped at none until authoritative source runs close.

    Architecture proof
  6. H5 / Matched usefulness

    Test complete-resource usefulness

    Test enabled/disabled causality and finite-workload improvement against the strongest-classical envelope at every scale under matched resource caps.

    Usefulness gate
  7. H6 / Programmable generalization

    Generalize to unseen compositional programs

    Demonstrate programmable ambient quantum computation on blind programs without requiring a performance-advantage claim. Current program checks remain diagnostic-only until typed semantics, scaling, anti-lookup, and replication payloads close.

    Product destination

Zymir / Ambient Quantum Systems

Build the evidence.
Then build the machine.

We are looking for collaborators in open quantum systems, molecular and solid-state spins, photonics, biomolecular materials, pulse control, and hard optimization.

hello@zymir.ai