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Senior Quantum Programmer Jobs in Texas (NOW HIRING)

Sr. Security Architect Location: Frisco, TX (Onsite- local to TX or willing to relocate on own ... security engineering. You will spearhead our transition into Post-Quantum Cryptography (PQC ...

Senior Product Manager

Austin, TX

$125K - $165K/yr

We are a passionate team of engineers, physicists, and cryptographers committed to transforming the ... Our technology is strong and our building blocks -- quantum entropy, our post-quantum cipher, and ...

Sr. Security Architect Location: Frisco, TX (Onsite- local to TX or willing to relocate on own ... security engineering. You will spearhead our transition into Post-Quantum Cryptography (PQC ...

Senior Cloud Engineer

Austin, TX · On-site

$140 - $180/hr

Qrypthardens cybersecurity and future-proofsencryption against quantum attacks byeliminatingkey ... Qryptis looking for a Senior Cloud Engineer to own the infrastructure and services behind our cloud ...

Senior Cloud Engineer

Austin, TX · On-site

$140 - $190/hr

Qrypthardens cybersecurity and future-proofsencryption against quantum attacks byeliminatingkey ... Qryptis looking for a Senior Cloud Engineer to own the infrastructure and services behind our cloud ...

Senior Electrical Engineer

Austin, TX

$106K - $138K/yr

JOB SUMMARY We're looking for experienced senior electrical engineers to drive our electronics ... Knowledge of emerging technologies such as AI accelerators or quantum computing is a plus PHYSICAL ...

Quantum - 5001 Blue Mound Road, Fort Worth, TX 76106. (Openings at other locations within school ... Headquartered in Dallas/Fort Worth, our team of 125+ professionals-including engineers, project ...

Showing results 21-40

Senior Quantum Programmer information

What is a senior quantum programmer?

A Senior Quantum Programmer is an advanced professional specializing in designing, developing, and optimizing algorithms for quantum computers. They work with quantum programming languages, such as Qiskit or Cirq, to solve complex computational problems that are difficult or impossible for classical computers. Their responsibilities often include leading quantum software projects, collaborating with physicists and engineers, and mentoring junior team members. Senior Quantum Programmers typically have a strong background in quantum mechanics, computer science, and mathematics. They play a key role in advancing the practical applications of quantum computing in various industries.

What are the key skills and qualifications needed to thrive as a senior quantum programmer?

To thrive as a Senior Quantum Programmer, you need advanced knowledge of quantum computing concepts, quantum algorithms, and strong programming skills in languages such as Python and Qiskit, often supported by a degree in physics, computer science, or related fields. Familiarity with quantum computing frameworks (e.g., IBM Qiskit, Google Cirq), cloud-based quantum platforms, and sometimes certifications in quantum programming are highly valued. Exceptional problem-solving abilities, collaboration, and adaptability to rapidly evolving technologies help set top candidates apart. These skills are vital for developing efficient quantum solutions, driving innovation, and contributing to the progress of this cutting-edge field.

What are some common challenges faced by senior quantum programmers when translating classical algorithms to quantum circuits?

Senior Quantum Programmers often encounter challenges in efficiently mapping classical algorithms onto quantum circuits due to limitations in quantum hardware, such as qubit coherence times and gate fidelity. Additionally, they must optimize algorithms to reduce the number of required qubits and operations, as current quantum computers are still relatively small and error-prone. Collaboration with physicists and hardware engineers is essential to address these challenges and to ensure that practical constraints are considered during development. Staying updated with rapidly evolving quantum frameworks and best practices is also key to success in this role.

What is the difference between Senior Quantum Programmer vs Quantum Software Engineer?

AspectSenior Quantum ProgrammerQuantum Software Engineer
Required CredentialsAdvanced degrees in Physics, Computer Science, or related fields; experience with quantum algorithmsSimilar credentials; focus on software development and programming skills
Work EnvironmentResearch labs, tech companies, academiaTech firms, startups, research institutions
Industry UsageQuantum computing research and developmentDevelopment of quantum applications and software tools

Both roles require strong backgrounds in quantum computing and programming. The Senior Quantum Programmer often leads complex projects and research initiatives, while the Quantum Software Engineer focuses on developing and implementing quantum algorithms and software solutions. The roles are closely related, with overlapping skills and work environments, but differ mainly in seniority and scope of responsibilities.

What are the most commonly searched types of Quantum Programmer jobs in Texas?

The most popular types of Quantum Programmer jobs in Texas are:

What are popular job titles related to Senior Quantum Programmer jobs in Texas?

For Senior Quantum Programmer jobs in Texas, the most frequently searched job titles are:

What job categories do people searching Senior Quantum Programmer jobs in Texas look for?

The top searched job categories for Senior Quantum Programmer jobs in Texas are:

What cities in Texas are hiring for Senior Quantum Programmer jobs?

Cities in Texas with the most Senior Quantum Programmer job openings:

Sr. Security Architect

Connect Tech+Talent

Frisco, TX • On-site

Other

Re-posted 18 days ago


Job description

Sr. Security Architect
Location: Frisco, TX (Onsite- local to TX or willing to relocate on own expenses)
Duration: 12 Months
Job Description

This role operates at the cutting edge of frontier security engineering. You will spearhead our transition into Post-Quantum Cryptography (PQC), architect advanced privacy-preserving runtimes, implement real-time kernel-level observability, and construct highly secure AI/LLM inference pipelines.
Mandatory Niche Skillset:
Candidates must possess direct, demonstrable experience in the following advanced domains:
Advanced Cryptography: Production-grade implementation of Homomorphic Encryption, Secure Multi-party Computation (SMPC), and Zero Knowledge Proofs (ZKP).
Kernel & Runtime Defense: Deep expertise in eBPF Security Monitoring and Runtime Application Self-Protection (RASP) frameworks.
Core Qualifications & Experience:
10+ years of progressive experience in enterprise cybersecurity architecture and infrastructure engineering.
Post-Quantum Strategy: Proven track record designing and implementing Post-Quantum Cryptography (PQC) strategies alongside robust crypto-agility frameworks.
Confidential Computing: Hands-on mastery of hardware-level Confidential Computing using Trusted Execution Environments (TEEs).
Identity & Zero Trust: Experience deploying Identity Threat Detection & Response (ITDR) solutions and establishing workload identities with SPIFFE/SPIRE for service-to-service authentication.
AI Pipeline Security: Hardened experience protecting live AI inference pipelines built on TensorRT-LLM and Triton Inference Server.
Cloud-Native Governance: Extensive familiarity managing Kubernetes-native security policies via Kyverno to guarantee multi-cluster policy-as-code enforcement.
Platform Engineering Integration: Experience embedding security guardrails natively into developer workflows utilizing Backstage IDP.
Cost Governance: Ability to design security structures that remain strictly aligned with enterprise FinOps principles.
Key Responsibilities:
Crypto-Agility & Evolution: Formulate and roll out enterprise-wide, future-proofed cryptographic standards resilient against quantum threats.
Advanced Defense Deployment: Architect systems using SMPC, Homomorphic Encryption, and ZKPs to protect multi-tenant enterprise workflows.
Runtime Guardrails: Oversee deployment of eBPF-based security monitoring tools and RASP configurations to track and prevent active zero-day runtime exploits.
AI Infrastructure Hardening: Partner with AI/ML infrastructure squads to guarantee total data isolation and isolation boundaries for foundational large language models.
Cross-Functional Governance: Sync with risk management, platform infrastructure, and compliance leads to ensure alignment with standard threat modeling frameworks (STRIDE, MITRE ATT&CK).