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{"type":"assistant","message":{"model":"claude-sonnet-4-6","id":"msg_01Tc8ydDjZHsj8Jnp7jpPCfy","type":"message","role":"assistant","content":[{"type":"thinking","thinking":"Let me navigate to the Wikipedia article about Nobel laureates in Physics and find the most recent winners.","signature":"EqgCClsIDBgCKkDOhgPQtEmqZMUntQoJTeQYD0rZ+PjGmDMPdNZ3aFC1zdUhggl91npFBibK46oXFdldNq8NPF4/vUb86Ebg2oERMhFjbGF1ZGUtc29ubmV0LTQtNjgAEgxLRqt4nD/EdwVIHIcaDF6QugWDbsenVhhDNiIwDbHfS6LR7yuZk+fG1NfzUcfduY4lc3pTlrBAtQBYm42MuUpMA/JA/3V8V7vCJBLvKnsxTwU5EgbsRXVqirzjINGgZNjIQamlK/8gJyTm5VQh7DTy7f9gA1/XO2uKiwd7eXWz1yIPx9KoHqfGH6uNapgwDjr9xORi0pnKM1JwXbZMpX2FkuX9lEODolpip1CTNczusQw+q1sr82Jm8GcrwK17EQdwbHWXPbglLAUYAQ=="}],"stop_reason":null,"stop_sequence":null,"stop_details":null,"usage":{"input_tokens":2,"cache_creation_input_tokens":7308,"cache_read_input_tokens":8603,"cache_creation":{"ephemeral_5m_input_tokens":0,"ephemeral_1h_input_tokens":7308},"output_tokens":8,"service_tier":"standard","inference_geo":"not_available"},"context_management":null},"parent_tool_use_id":null,"session_id":"ec50c972-649a-4c4f-900b-373e1b68326f","uuid":"d48252a6-c1f2-42a7-85d2-36fc0fb82dbd"}
{"type":"assistant","message":{"model":"claude-sonnet-4-6","id":"msg_01Tc8ydDjZHsj8Jnp7jpPCfy","type":"message","role":"assistant","content":[{"type":"tool_use","id":"toolu_01BZdxsoGgWR4gtAaxKdB5NG","name":"Bash","input":{"command":"cat << 'EOF' > /tmp/nobel_script.js\nconst page = await browser.newPage();\nawait page.goto('https://en.wikipedia.org/wiki/List_of_Nobel_laureates_in_Physics');\n\n// Get the table content - look for recent years\nconst content = await page.evaluate(() => {\n  // Find all table rows\n  const rows = document.querySelectorAll('table.wikitable tr');\n  const results = [];\n  for (const row of rows) {\n    const cells = row.querySelectorAll('td, th');\n    if (cells.length >= 2) {\n      const year = cells[0]?.textContent?.trim();\n      if (year && /^20(2[0-9]|1[5-9])/.test(year)) {\n        results.push(Array.from(cells).map(c => c.textContent.trim()).join(' | '));\n      }\n    }\n  }\n  return results;\n});\n\nconsole.log(JSON.stringify(content, null, 2));\nawait page.close();\nEOF\ndev-browser --headless --browser axi-bench-dev-browser-wikipedia_deep_extraction-run5 run /tmp/nobel_script.js","description":"Scrape recent Nobel Physics laureates from Wikipedia"},"caller":{"type":"direct"}}],"stop_reason":null,"stop_sequence":null,"stop_details":null,"usage":{"input_tokens":2,"cache_creation_input_tokens":7308,"cache_read_input_tokens":8603,"cache_creation":{"ephemeral_5m_input_tokens":0,"ephemeral_1h_input_tokens":7308},"output_tokens":8,"service_tier":"standard","inference_geo":"not_available"},"context_management":null},"parent_tool_use_id":null,"session_id":"ec50c972-649a-4c4f-900b-373e1b68326f","uuid":"41acf24f-c333-4c5b-8165-3727f367964b"}
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{"type":"user","message":{"role":"user","content":[{"tool_use_id":"toolu_01BZdxsoGgWR4gtAaxKdB5NG","type":"tool_result","content":"[\n  \"2015 |  | Takaaki Kajita | Japan | \\\"For the discovery of neutrino oscillations, which shows that neutrinos have mass.\\\" | [118]\",\n  \"2016 |  | David J. Thouless | United States | \\\"For theoretical discoveries of topological phase transitions and topological phases of matter.\\\" | [119]\",\n  \"2017 |  | Rainer Weiss | United States | \\\"For decisive contributions to the LIGO detector and the observation of gravitational waves.\\\" | [120]\",\n  \"2018 |  | Arthur Ashkin | United States | \\\"For the optical tweezers and their application to biological systems.\\\" | [121]\",\n  \"2019 |  | James Peebles | United States | \\\"For theoretical discoveries in physical cosmology.\\\" | [122]\",\n  \"2020 |  | Roger Penrose | United Kingdom | \\\"For the discovery that black hole formation is a robust prediction of the general theory of relativity.\\\" | [123]\",\n  \"2021 |  | Syukuro Manabe | United States | \\\"For the physical modelling of Earth’s climate, quantifying variability and reliably predicting global warming.\\\" | [124]\",\n  \"2022 |  | Alain Aspect | France | \\\"For experiments with entangled photons, establishing the violation of Bell inequalities and pioneering quantum information science.\\\" | [125]\",\n  \"2023 |  | Pierre Agostini | United States | \\\"For experimental methods that generate attosecond pulses of light for the study of electron dynamics in matter.\\\" | [126]\",\n  \"2024 |  | John J. Hopfield | United States | \\\"For foundational discoveries and inventions that enable machine learning with artificial neural networks.\\\" | [127]\",\n  \"2025 |  | John Clarke | United States | \\\"For the discovery of macroscopic quantum mechanical tunnelling and energy quantisation in an electric circuit.\\\" | [128]\"\n]","is_error":false}]},"parent_tool_use_id":null,"session_id":"ec50c972-649a-4c4f-900b-373e1b68326f","uuid":"a339bca5-6f78-4848-b49b-a3a59aa2c45d","timestamp":"2026-04-03T09:16:10.478Z","tool_use_result":{"stdout":"[\n  \"2015 |  | Takaaki Kajita | Japan | \\\"For the discovery of neutrino oscillations, which shows that neutrinos have mass.\\\" | [118]\",\n  \"2016 |  | David J. Thouless | United States | \\\"For theoretical discoveries of topological phase transitions and topological phases of matter.\\\" | [119]\",\n  \"2017 |  | Rainer Weiss | United States | \\\"For decisive contributions to the LIGO detector and the observation of gravitational waves.\\\" | [120]\",\n  \"2018 |  | Arthur Ashkin | United States | \\\"For the optical tweezers and their application to biological systems.\\\" | [121]\",\n  \"2019 |  | James Peebles | United States | \\\"For theoretical discoveries in physical cosmology.\\\" | [122]\",\n  \"2020 |  | Roger Penrose | United Kingdom | \\\"For the discovery that black hole formation is a robust prediction of the general theory of relativity.\\\" | [123]\",\n  \"2021 |  | Syukuro Manabe | United States | \\\"For the physical modelling of Earth’s climate, quantifying variability and reliably predicting global warming.\\\" | [124]\",\n  \"2022 |  | Alain Aspect | France | \\\"For experiments with entangled photons, establishing the violation of Bell inequalities and pioneering quantum information science.\\\" | [125]\",\n  \"2023 |  | Pierre Agostini | United States | \\\"For experimental methods that generate attosecond pulses of light for the study of electron dynamics in matter.\\\" | [126]\",\n  \"2024 |  | John J. Hopfield | United States | \\\"For foundational discoveries and inventions that enable machine learning with artificial neural networks.\\\" | [127]\",\n  \"2025 |  | John Clarke | United States | \\\"For the discovery of macroscopic quantum mechanical tunnelling and energy quantisation in an electric circuit.\\\" | [128]\"\n]","stderr":"","interrupted":false,"isImage":false,"noOutputExpected":false}}
{"type":"assistant","message":{"model":"claude-sonnet-4-6","id":"msg_01RBpwAtMiE7U9Xu81yjyqQA","type":"message","role":"assistant","content":[{"type":"thinking","thinking":"I need to also get the co-laureates for each year. Let me get more details for the 3 most recent years (2025, 2024, 2023).","signature":"ErgCClsIDBgCKkDO2jgMXWyTn13A6SjiPOqxua7LSamJTt4/ExnCIAJWFMUzNQZjkwtdPw5mo2/OJz/jEJ52XnNmU9oWBOwepsyGMhFjbGF1ZGUtc29ubmV0LTQtNjgAEgzR5IAnFDRWx6f098gaDKIEStIa0oUVE5J1OyIwolY77XalRLCm/y8jq9H3bY5q/vfq97q0evgR3FIoMqVPj5fbit5XNR3GWGVAhQb4KooBesQYMFTSvrcQmkAo7552yxXJw0nZVkOaQjWT4NJVyP0AtIh3uu5c1t/mh94pyvlPyVWwEs4FZ0gfVvI2ayc+83cqHAuPmvUh5+2PMb75Je/tKsS6X+x1vTgHvOmjerlBDzsR2yyyIR1MZpnCIYdF7EHHFYSxKBZnFgldI5u72Y1lnrcSyrPv0CdZGAE="}],"stop_reason":null,"stop_sequence":null,"stop_details":null,"usage":{"input_tokens":1,"cache_creation_input_tokens":890,"cache_read_input_tokens":15911,"cache_creation":{"ephemeral_5m_input_tokens":0,"ephemeral_1h_input_tokens":890},"output_tokens":9,"service_tier":"standard","inference_geo":"not_available"},"context_management":null},"parent_tool_use_id":null,"session_id":"ec50c972-649a-4c4f-900b-373e1b68326f","uuid":"1648643d-02b8-427c-a49e-14f203c46ae2"}
{"type":"assistant","message":{"model":"claude-sonnet-4-6","id":"msg_01RBpwAtMiE7U9Xu81yjyqQA","type":"message","role":"assistant","content":[{"type":"tool_use","id":"toolu_01GWHmW7Cdow7NZaH6fDyiBU","name":"Bash","input":{"command":"cat << 'EOF' > /tmp/nobel_detail.js\nconst page = await browser.newPage();\nawait page.goto('https://en.wikipedia.org/wiki/List_of_Nobel_laureates_in_Physics');\n\nconst content = await page.evaluate(() => {\n  const rows = document.querySelectorAll('table.wikitable tr');\n  const results = [];\n  let currentYear = null;\n  \n  for (const row of rows) {\n    const cells = row.querySelectorAll('td, th');\n    if (cells.length === 0) continue;\n    \n    // Check if first cell has a year\n    const firstCell = cells[0]?.textContent?.trim();\n    if (/^20(2[0-9])/.test(firstCell)) {\n      currentYear = firstCell;\n    }\n    \n    if (currentYear && parseInt(currentYear) >= 2023) {\n      const rowspan = cells[0]?.getAttribute('rowspan');\n      results.push({\n        year: currentYear,\n        cells: Array.from(cells).map(c => c.textContent.trim())\n      });\n    }\n  }\n  return results;\n});\n\nconsole.log(JSON.stringify(content, null, 2));\nawait page.close();\nEOF\ndev-browser --headless --browser axi-bench-dev-browser-wikipedia_deep_extraction-run5 run /tmp/nobel_detail.js","description":"Get detailed Nobel Physics laureates for 2023-2025"},"caller":{"type":"direct"}}],"stop_reason":null,"stop_sequence":null,"stop_details":null,"usage":{"input_tokens":1,"cache_creation_input_tokens":890,"cache_read_input_tokens":15911,"cache_creation":{"ephemeral_5m_input_tokens":0,"ephemeral_1h_input_tokens":890},"output_tokens":9,"service_tier":"standard","inference_geo":"not_available"},"context_management":null},"parent_tool_use_id":null,"session_id":"ec50c972-649a-4c4f-900b-373e1b68326f","uuid":"facbe39a-e71d-4707-a25a-95bc8644e833"}
{"type":"user","message":{"role":"user","content":[{"tool_use_id":"toolu_01GWHmW7Cdow7NZaH6fDyiBU","type":"tool_result","content":"[\n  {\n    \"year\": \"2023\",\n    \"cells\": [\n      \"2023\",\n      \"\",\n      \"Pierre Agostini\",\n      \"United States\",\n      \"\\\"For experimental methods that generate attosecond pulses of light for the study of electron dynamics in matter.\\\"\",\n      \"[126]\"\n    ]\n  },\n  {\n    \"year\": \"2023\",\n    \"cells\": [\n      \"\",\n      \"Ferenc Krausz\",\n      \"Germany\"\n    ]\n  },\n  {\n    \"year\": \"2023\",\n    \"cells\": [\n      \"\",\n      \"Anne L’Huillier\",\n      \"Sweden\"\n    ]\n  },\n  {\n    \"year\": \"2023\",\n    \"cells\": [\n      \"\"\n    ]\n  },\n  {\n    \"year\": \"2024\",\n    \"cells\": [\n      \"2024\",\n      \"\",\n      \"John J. Hopfield\",\n      \"United States\",\n      \"\\\"For foundational discoveries and inventions that enable machine learning with artificial neural networks.\\\"\",\n      \"[127]\"\n    ]\n  },\n  {\n    \"year\": \"2024\",\n    \"cells\": [\n      \"\",\n      \"Geoffrey Hinton\",\n      \"Canada\"\n    ]\n  },\n  {\n    \"year\": \"2024\",\n    \"cells\": [\n      \"\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"2025\",\n      \"\",\n      \"John Clarke\",\n      \"United States\",\n      \"\\\"For the discovery of macroscopic quantum mechanical tunnelling and energy quantisation in an electric circuit.\\\"\",\n      \"[128]\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"\",\n      \"Michel H. Devoret\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"\",\n      \"John M. Martinis\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Country\",\n      \"Number\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"United States\",\n      \"115\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"United Kingdom\",\n      \"28\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Germany\",\n      \"23\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"France\",\n      \"16\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Switzerland\",\n      \"10\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Russia /  Soviet Union\",\n      \"9\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Japan\",\n      \"8\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Netherlands\",\n      \"7\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Sweden\",\n      \"5\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Canada\",\n      \"3\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Denmark\",\n      \"3\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Italy\",\n      \"3\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Austria\",\n      \"2\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Australia\",\n      \"1\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Belgium\",\n      \"1\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"China\",\n      \"1\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"India\",\n      \"1\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Ireland\",\n      \"1\"\n    ]\n  }\n]","is_error":false}]},"parent_tool_use_id":null,"session_id":"ec50c972-649a-4c4f-900b-373e1b68326f","uuid":"5989268b-8603-476a-9e25-7f39346fdc11","timestamp":"2026-04-03T09:16:17.323Z","tool_use_result":{"stdout":"[\n  {\n    \"year\": \"2023\",\n    \"cells\": [\n      \"2023\",\n      \"\",\n      \"Pierre Agostini\",\n      \"United States\",\n      \"\\\"For experimental methods that generate attosecond pulses of light for the study of electron dynamics in matter.\\\"\",\n      \"[126]\"\n    ]\n  },\n  {\n    \"year\": \"2023\",\n    \"cells\": [\n      \"\",\n      \"Ferenc Krausz\",\n      \"Germany\"\n    ]\n  },\n  {\n    \"year\": \"2023\",\n    \"cells\": [\n      \"\",\n      \"Anne L’Huillier\",\n      \"Sweden\"\n    ]\n  },\n  {\n    \"year\": \"2023\",\n    \"cells\": [\n      \"\"\n    ]\n  },\n  {\n    \"year\": \"2024\",\n    \"cells\": [\n      \"2024\",\n      \"\",\n      \"John J. Hopfield\",\n      \"United States\",\n      \"\\\"For foundational discoveries and inventions that enable machine learning with artificial neural networks.\\\"\",\n      \"[127]\"\n    ]\n  },\n  {\n    \"year\": \"2024\",\n    \"cells\": [\n      \"\",\n      \"Geoffrey Hinton\",\n      \"Canada\"\n    ]\n  },\n  {\n    \"year\": \"2024\",\n    \"cells\": [\n      \"\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"2025\",\n      \"\",\n      \"John Clarke\",\n      \"United States\",\n      \"\\\"For the discovery of macroscopic quantum mechanical tunnelling and energy quantisation in an electric circuit.\\\"\",\n      \"[128]\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"\",\n      \"Michel H. Devoret\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"\",\n      \"John M. Martinis\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Country\",\n      \"Number\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"United States\",\n      \"115\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"United Kingdom\",\n      \"28\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Germany\",\n      \"23\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"France\",\n      \"16\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Switzerland\",\n      \"10\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Russia /  Soviet Union\",\n      \"9\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Japan\",\n      \"8\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Netherlands\",\n      \"7\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Sweden\",\n      \"5\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Canada\",\n      \"3\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Denmark\",\n      \"3\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Italy\",\n      \"3\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Austria\",\n      \"2\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Australia\",\n      \"1\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Belgium\",\n      \"1\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"China\",\n      \"1\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"India\",\n      \"1\"\n    ]\n  },\n  {\n    \"year\": \"2025\",\n    \"cells\": [\n      \"Ireland\",\n      \"1\"\n    ]\n  }\n]","stderr":"","interrupted":false,"isImage":false,"noOutputExpected":false}}
{"type":"assistant","message":{"model":"claude-sonnet-4-6","id":"msg_01KbBbFWCSPr1XqdAgbFnYR1","type":"message","role":"assistant","content":[{"type":"text","text":"Here are the Nobel Prize in Physics winners for the 3 most recent years listed on the Wikipedia article:\n\n---\n\n**2025**\n- **John Clarke** (United States)\n- **Michel H. Devoret**\n- **John M. Martinis**\n\n*\"For the discovery of macroscopic quantum mechanical tunnelling and energy quantisation in an electric circuit.\"*\n\n---\n\n**2024**\n- **John J. Hopfield** (United States)\n- **Geoffrey Hinton** (Canada)\n\n*\"For foundational discoveries and inventions that enable machine learning with artificial neural networks.\"*\n\n---\n\n**2023**\n- **Pierre Agostini** (United States)\n- **Ferenc Krausz** (Germany)\n- **Anne L'Huillier** (Sweden)\n\n*\"For experimental methods that generate attosecond pulses of light for the study of electron dynamics in matter.\"*"}],"stop_reason":null,"stop_sequence":null,"stop_details":null,"usage":{"input_tokens":1,"cache_creation_input_tokens":1632,"cache_read_input_tokens":16801,"cache_creation":{"ephemeral_5m_input_tokens":0,"ephemeral_1h_input_tokens":1632},"output_tokens":1,"service_tier":"standard","inference_geo":"not_available"},"context_management":null},"parent_tool_use_id":null,"session_id":"ec50c972-649a-4c4f-900b-373e1b68326f","uuid":"5de64723-40e4-4c70-9328-df02ff8f9deb"}
{"type":"result","subtype":"success","is_error":false,"duration_ms":18687,"duration_api_ms":16584,"num_turns":3,"result":"Here are the Nobel Prize in Physics winners for the 3 most recent years listed on the Wikipedia article:\n\n---\n\n**2025**\n- **John Clarke** (United States)\n- **Michel H. Devoret**\n- **John M. Martinis**\n\n*\"For the discovery of macroscopic quantum mechanical tunnelling and energy quantisation in an electric circuit.\"*\n\n---\n\n**2024**\n- **John J. Hopfield** (United States)\n- **Geoffrey Hinton** (Canada)\n\n*\"For foundational discoveries and inventions that enable machine learning with artificial neural networks.\"*\n\n---\n\n**2023**\n- **Pierre Agostini** (United States)\n- **Ferenc Krausz** (Germany)\n- **Anne L'Huillier** (Sweden)\n\n*\"For experimental methods that generate attosecond pulses of light for the study of electron dynamics in matter.\"*","stop_reason":"end_turn","session_id":"ec50c972-649a-4c4f-900b-373e1b68326f","total_cost_usd":0.065664,"usage":{"input_tokens":4,"cache_creation_input_tokens":9830,"cache_read_input_tokens":41315,"output_tokens":1093,"server_tool_use":{"web_search_requests":0,"web_fetch_requests":0},"service_tier":"standard","cache_creation":{"ephemeral_1h_input_tokens":9830,"ephemeral_5m_input_tokens":0},"inference_geo":"","iterations":[],"speed":"standard"},"modelUsage":{"claude-sonnet-4-6":{"inputTokens":4,"outputTokens":1093,"cacheReadInputTokens":41315,"cacheCreationInputTokens":9830,"webSearchRequests":0,"costUSD":0.065664,"contextWindow":200000,"maxOutputTokens":32000}},"permission_denials":[],"fast_mode_state":"off","uuid":"71cbd859-18ae-419c-bee9-38ed399e7b41"}
